1414:
For example, it has been uncovered that the DNA of certain genes is often damaged in melanoma cells, most likely as a result of damage from UV radiation, and in turn increases the likelihood of developing melanoma. Specifically, it has been found that a large percentage of melanomas have mutations in the B-RAF gene which leads to melanoma by causing an MEK-ERK kinase cascade when activated. In addition to B-RAF, MITF is also known to play a crucial role in melanoma progression. Since it is a transcription factor that is involved in the regulation of genes related to invasiveness, migration, and metastasis, it can play a role in the progression of melanoma.
1855:
development, a function redundant of MITF. The combined loss of both genes results in severe osteopetrosis, pointing to an interaction between MITF and other members of its transcription factor family. In turn, TFEB has been termed as the master regulator of lysosome biogenesis and autophagy. Interestingly, MITF, TFEB and TFE3 separate roles in modulating starvation-induced autophagy have been described in melanoma. Moreover, MITF and TFEB proteins, directly regulate each other’s mRNA and protein expression while their subcellular localization and transcriptional activity are subject to similar modulation, such as the
304:
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178:
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209:
31:
1917:) that is recognized, bound and activated by DDX3X. Although, the 5' UTR of MITF only consists of a nucleotide stretch of 123-nt, this region is predicted to fold into energetically favorable RNA secondary structures including multibranched loops and asymmetric bulges that is characteristics of IRES elements. Activation of this
1339:, repair, mitosis, microRNA production, membrane trafficking, mitochondrial metabolism, and much more. Mutation of this gene results in deafness, bone loss, small eyes, and poorly pigmented eyes and skin. In human subjects, because it is known that MITF controls the expression of various genes that are essential for normal
1854:
MITF, TFE3 and TFEB are part of the basic helix-loop-helix-leucine zipper family of transcription factors. Each protein encoded by the family of transcription factors can bind DNA. MITF is necessary for melanocyte and eye development and new research suggests that TFE3 is also required for osteoclast
1706:
production. Ap4A, which is an adenosine joined to another adenosine through a 5‘-5’tetraphosphate bridge, binds to HINT1 and this releases MITF from the inhibitory complex, allowing it to transcribe its target genes. Specifically, Ap4A causes a polymerization of the HINT1 molecule into filaments. The
1401:
Tietz syndrome, first described in 1923, is a congenital disorder often characterized by deafness and leucism. Tietz is caused by a mutation in the MITF gene. The mutation in MITF deletes or changes a single amino acid base pair specifically in the base motif region of the MITF protein. The new MITF
1316:. The term "lineage-specific", since it relates to MITF, means genes or traits that are only found in a certain cell type. Therefore, MITF may be involved in the rewiring of signaling cascades that are specifically required for the survival and physiological function of their normal cell precursors.
1843:
The Myc-associated zinc-finger protein related factor (MAZR) interacts with the Zip domain of MITF. When expressed together, both MAZR and MITF increase promoter activity of the mMCP-6 gene. MAZR and MITF together transactivate the mMCP-6 gene. MAZR also plays a role in the phenotypic expression of
1731:
type 2 enzymatic family (NUDT2), to cleave Ap4A, allow the binding of HINT1 to MITF and thus suppress the expression of the MITF transcribed genes. NUDT2 itself has also been shown to be associated with human breast carcinoma, where it promotes cellular proliferation. The enzyme is 17 kDa large and
1865:
is a ubiquitin conjugating enzyme whose proteins associates with MITF. Although hUBC9 is known to act preferentially with SENTRIN/SUMO1, an in vitro analysis demonstrated greater actual association with MITF. hUBC9 is a critical regulator of melanocyte differentiation. To do this, it targets MITF
1413:
are commonly known as cells that are responsible for producing the pigment melanin which gives coloration to the hair, skin, and nails. The exact mechanisms of how exactly melanocytes become cancerous are relatively unclear, but there is ongoing research to gain more information about the process.
1873:
The functional cooperation between MITF and the lymphoid enhancing factor (LEF-1) results in a synergistic transactivation of the dopachrome tautomerase gene promoter, which is an early melanoblast marker. LEF-1 is involved in the process of regulation by Wnt signaling. LEF-1 also cooperates with
1869:
Protein kinase C-interacting protein 1 (PKC1) associates with MITF. Their association is reduced upon cell activation. When this happens MITF disengages from PKC1. PKC1 by itself, found in the cytosol and nucleus, has no known physiological function. It does, however, have the ability to suppress
1714:
MITF is also an integral part of melanocytes, where it regulates the expression of a number of proteins with melanogenic potential. Continuous expression of MITF at a certain level is one of the necessary factors for melanoma cells to proliferate, survive and avoid detection by host immune cells
1397:
Waardenburg syndrome is a rare genetic disorder. Its symptoms include deafness, minor defects, and abnormalities in pigmentation. Mutations in the MITF gene have been found in certain patients with
Waardenburg syndrome, type II. Mutations that change the amino acid sequence of that result in an
1851:'s DNA binding activity. PIAS3 directly interacts with MITF, and STAT3 does not interfere with the interaction between PIAS3 and MITF. PIAS3 functions as a key molecule in suppressing the transcriptional activity of MITF. This is important when considering mast cell and melanocyte development.
1811:
activation signaling. The induction of serine phosphorylation by the frequently altered MAPK/BRAF pathway and the GSK-3 pathway in melanoma regulates MITF nuclear export and thereby decreasing MITF activity in the nucleus. Similarly, tyrosine phosphorylation mediated by the presence of the KIT
1701:
207 in a MAPK-dependent manner. This phosphorylation causes LysRS to change its conformation, detach from the complex and translocate into the nucleus, where it associates with the encoding histidine triad nucleotide–binding protein 1 (HINT1) thus forming the MITF-HINT1 inhibitory complex. The
1402:
protein is unable to bind to DNA and melanocyte development and subsequently melanin production is altered. A reduced number of melanocytes can lead to hearing loss, and decreased melanin production can account for the light skin and hair color that make Tietz syndrome so noticeable.
1697:(LysRS) normally resides in the multisynthetase complex. This complex consists of nine different aminoacyl-tRNA synthetases and three scaffold proteins and has been termed the "signalosome" due to its non-catalytic signalling functions. After activation, LysRS is phosphorylated on
57:
1368:
An understanding of MITF is necessary to understand how certain lineage-specific cancers and other diseases progress. In addition, current and future research can lead to potential avenues to target this transcription factor mechanism for cancer prevention.
1398:
abnormally small MITF are found. These mutations disrupt dimer formation, and as a result cause insufficient development of melanocytes. The shortage of melanocytes causes some of the characteristic features of
Waardenburg syndrome.
4910:
1897:
phosphorylation. This chain of molecular events leads to two levels of MITF suppression: first, ATF4 protein binds and suppresses MITF transcription and second, eIF2α blocks MITF translation possibly through the inhibition of
4701:
Xu W, Gong L, Haddad MM, Bischof O, Campisi J, Yeh ET, Medrano EE (March 2000). "Regulation of microphthalmia-associated transcription factor MITF protein levels by association with the ubiquitin-conjugating enzyme hUBC9".
1331:, belong to a subfamily of related bHLHZip proteins, termed the MiT-TFE family of transcription factors. The factors are able to form stable DNA-binding homo- and heterodimers. The gene that encodes for MITF resides at the
1707:
polymerization blocks the interface for MITF and thus prevents the binding of the two proteins. This mechanism is dependent on the precise length of the phosphate bridge in the Ap4A molecule so other nucleotides such as
1422:
MITF recognizes E-box (CAYRTG) and M-box (TCAYRTG or CAYRTGA) sequences in the promoter regions of target genes. Known target genes (confirmed by at least two independent sources) of this transcription factor include,
1723:(melan-A). Post-translational modifications of the HINT1 molecules have been shown to affect MITF gene expression as well as the binding of Ap4A. Mutations in HINT1 itself have been shown to be the cause of axonal
1732:
can freely diffuse between the nucleus and cytosol explaining its presence in the nucleus. It has also been shown to be actively transported into the nucleus by directly interacting with the N-terminal domain of
1736:
upon immunological stimulation of the mast cells. Growing evidence is pointing to the fact that the LysRS-Ap4A-MITF signalling pathway is in fact an integral aspect of controlling MITF transcriptional activity.
2451:
Delfgaauw J, Duschl J, Wellbrock C, Froschauer C, Schartl M, Altschmied J (November 2003). "MITF-M plays an essential role in transcriptional activation and signal transduction in
Xiphophorus melanoma".
4903:
3814:
Motzik A, Amir E, Erlich T, Wang J, Kim BG, Han JM, et al. (August 2017). "Post-translational modification of HINT1 mediates activation of MITF transcriptional activity in human melanoma cells".
3949:
Oka K, Suzuki T, Onodera Y, Miki Y, Takagi K, Nagasaki S, et al. (April 2011). "Nudix-type motif 2 in human breast carcinoma: a potent prognostic factor associated with cell proliferation".
5832:
10322:
4896:
2416:
Lister JA, Robertson CP, Lepage T, Johnson SL, Raible DW (September 1999). "nacre encodes a zebrafish microphthalmia-related protein that regulates neural-crest-derived pigment cell fate".
1828:. Association of MITF with other proteins is a critical step in the regulation of MITF-mediated transcriptional activity. Some commonly studied MITF interactions include those with MAZR,
6331:
3857:
Zimoń M, Baets J, Almeida-Souza L, De
Vriendt E, Nikodinovic J, Parman Y, et al. (October 2012). "Loss-of-function mutations in HINT1 cause axonal neuropathy with neuromyotonia".
110:, CMM8, MI, WS2, WS2A, bHLHe32, microphthalmia-associated transcription factor, melanogenesis associated transcription factor, COMMAD, melanocyte inducing transcription factor, MITF-A
4497:"The microphthalmia transcription factor and the related helix-loop-helix zipper factors TFE-3 and TFE-C collaborate to activate the tartrate-resistant acid phosphatase promoter"
4356:"Interaction and cooperation of mi transcription factor (MITF) and myc-associated zinc-finger protein-related factor (MAZR) for transcription of mouse mast cell protease 6 gene"
3507:
Hou L, Panthier JJ, Arnheiter H (December 2000). "Signaling and transcriptional regulation in the neural crest-derived melanocyte lineage: interactions between KIT and MITF".
8538:
4090:
Hemesath TJ, Price ER, Takemoto C, Badalian T, Fisher DE (January 1998). "MAP kinase links the transcription factor
Microphthalmia to c-Kit signalling in melanocytes".
317:
216:
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6238:
6233:
6228:
1803:
are also critical activators of MITF phosphorylation. In contrast, tyrosine phosphorylation is induced by the presence of the KIT oncogenic mutation D816V. This KIT
5877:
5548:
3209:"The microphthalmia transcription factor (Mitf) controls expression of the ocular albinism type 1 gene: link between melanin synthesis and melanosome biogenesis"
4438:"Mitf and Tfe3, two members of the Mitf-Tfe family of bHLH-Zip transcription factors, have important but functionally redundant roles in osteoclast development"
3256:
Aoki H, Moro O (September 2002). "Involvement of microphthalmia-associated transcription factor (MITF) in expression of human melanocortin-1 receptor (MC1R)".
3111:"Epistatic connections between microphthalmia-associated transcription factor and endothelin signaling in Waardenburg syndrome and other pigmentary disorders"
6371:
2704:"The microphthalmia transcription factor regulates expression of the tartrate-resistant acid phosphatase gene during terminal differentiation of osteoclasts"
10166:
10150:
4969:
2032:
Hershey CL, Fisher DE (April 2004). "Mitf and Tfe3: members of a b-HLH-ZIP transcription factor family essential for osteoclast development and function".
6223:
898:
879:
139:
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6001:
5996:
5984:
5979:
5974:
5969:
5964:
5892:
9888:
6687:
5746:
1874:
MITF-related proteins like TFE3. MITF is a modulator of LEF-1, and this regulation ensures efficient propagation of Wnt signals in many cells.
2014:
1800:
1996:
10342:
9651:
5543:
5115:
2933:"Microphthalmia-associated transcription factor is a critical transcriptional regulator of melanoma inhibitor of apoptosis in melanomas"
1429:
303:
9920:
8819:
6906:
4739:"Suppression of microphthalmia transcriptional activity by its association with protein kinase C-interacting protein 1 in mast cells"
1210:
6364:
6359:
6287:
6277:
5154:
5144:
4979:
1217:
1825:
280:
3544:"Selective down-regulation of tyrosinase family gene TYRP1 by inhibition of the activity of melanocyte transcription factor, MITF"
2221:"Mechanism of conditional partner selectivity in MITF/TFE family transcription factors with a conserved coiled coil stammer motif"
6282:
6196:
4783:"Translation reprogramming is an evolutionarily conserved driver of phenotypic plasticity and therapeutic resistance in melanoma"
1683:
3902:"Diadenosine tetraphosphate hydrolase is part of the transcriptional regulation network in immunologically activated mast cells"
9218:
6494:
6484:
5085:
4964:
1983:
1962:
10347:
6849:
6489:
6184:
3994:"Importin beta plays an essential role in the regulation of the LysRS-Ap(4)A pathway in immunologically activated mast cells"
3675:"The function of lysyl-tRNA synthetase and Ap4A as signaling regulators of MITF activity in FcepsilonRI-activated mast cells"
2219:
Pogenberg V, Ballesteros-Álvarez J, Schober R, Sigvaldadóttir I, Obarska-Kosinska A, Milewski M, et al. (January 2020).
1910:
1541:
1979:
3427:"The gene encoding the T-box factor Tbx2 is a target for the microphthalmia-associated transcription factor in melanocytes"
202:
177:
54:
10131:
10126:
9277:
6189:
4878:
1870:
MITF transcriptional activity and can function as an in vivo negative regulator of MITF induced transcriptional activity.
1958:
10226:
8562:
6712:
6265:
6255:
1914:
1885:
of MITF is still an unexplored area with only two peer-reviewed papers (as of 2019) highlighting the importance. During
119:
8731:
8726:
8277:
6354:
6272:
6260:
5336:
3593:"Hierarchical network between the components of the multi-tRNA synthetase complex: implications for complex formation"
1720:
4143:"c-Kit triggers dual phosphorylations, which couple activation and degradation of the essential melanocyte factor Mi"
3468:"Transcriptional regulation of the melanoma prognostic marker melastatin (TRPM1) by MITF in melanocytes and melanoma"
1764:
on several serine and tyrosine residues. Serine phosphorylation is regulated by several signaling pathways including
316:
215:
6467:
5465:
3345:"Microphthalmia-associated transcription factor regulates RAB27A gene expression and controls melanosome transport"
1466:
2892:"VMD2 promoter requires two proximal E-box sites for its activity in vivo and is regulated by the MITF-TFE family"
1744:
has been confirmed in cardiomyocytes. A heart specific isoform of MITF is a major regulator of cardiac growth and
9883:
6764:
6749:
6732:
6727:
6722:
6717:
6628:
6603:
6479:
6391:
6381:
5538:
5011:
1788:
1694:
1451:
309:
208:
2974:"Critical role of CDK2 for melanoma growth linked to its melanocyte-specific transcriptional regulation by MITF"
2843:"Bcl2 regulation by the melanocyte master regulator Mitf modulates lineage survival and melanoma cell viability"
10352:
9625:
9260:
8776:
8349:
8188:
7123:
7118:
7103:
6578:
6553:
6435:
6386:
6179:
5570:
5036:
4882:
1882:
1769:
943:
127:
4238:"C-KIT signaling depends on microphthalmia-associated transcription factor for effects on cell proliferation"
2115:"microphthalmia, a critical factor in melanocyte development, defines a discrete transcription factor family"
10357:
9990:
8031:
7348:
6462:
6450:
2067:
Garraway LA, Sellers WR (August 2006). "Lineage dependency and lineage-survival oncogenes in human cancer".
1761:
1727:. The regulatory mechanism relies on the enzyme diadenosine tetraphosphate hydrolase, a member of the
1483:
924:
4642:
Möller K, Sigurbjornsdottir S, Arnthorsson AO, Pogenberg V, Dilshat R, Fock V, et al. (January 2019).
4197:"D816V Induces SRC-Mediated Tyrosine Phosphorylation of MITF and Altered Transcription Program in Melanoma"
2638:
1686:
is activated upon allergen stimulation. The binding of immunoglobulin E to the high-affinity IgE receptor (
10121:
8168:
8163:
6558:
6455:
6250:
6211:
5274:
4923:
2489:"The complex relationship between MITF and the immune system: a Melanoma ImmunoTherapy (response) Factor?"
1918:
1708:
1461:
1295:
2113:
Hemesath TJ, Steingrímsson E, McGill G, Hansen MJ, Vaught J, Hodgkinson CA, et al. (November 1994).
10113:
9673:
6472:
6408:
6403:
6216:
5292:
4781:
Falletta P, Sanchez-Del-Campo L, Chauhan J, Effern M, Kenyon A, Kershaw CJ, et al. (January 2017).
3018:"The expression of Clcn7 and Ostm1 in osteoclasts is coregulated by microphthalmia transcription factor"
1724:
3296:"MLANA/MART1 and SILV/PMEL17/GP100 are transcriptionally regulated by MITF in melanocytes and melanoma"
2792:
Hoek KS, Schlegel NC, Eichhoff OM, Widmer DS, Praetorius C, Einarsson SO, et al. (December 2008).
9694:
9686:
7524:
7006:
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6526:
6521:
6201:
6084:
4919:
4655:
4557:
4449:
4308:
4249:
4099:
3772:
3763:
Gray-Schopfer V, Wellbrock C, Marais R (February 2007). "Melanoma biology and new targeted therapy".
2170:
2157:
Ballesteros-Álvarez J, Dilshat R, Fock V, Möller K, Karl L, Larue L, et al. (3 September 2020).
1550:
1387:
1348:
1301:
191:
4888:
4603:"Characterization of the CLEAR network reveals an integrated control of cellular clearance pathways"
106:
10008:
9712:
9408:
7611:
6816:
6398:
6376:
6349:
6311:
6245:
4436:
Steingrimsson E, Tessarollo L, Pathak B, Hou L, Arnheiter H, Copeland NG, Jenkins NA (April 2002).
3386:"Identification of Aim-1 as the underwhite mouse mutant and its transcriptional regulation by MITF"
1804:
1749:
1189:
1185:
1164:
1160:
1156:
1152:
1148:
1118:
1114:
1086:
1082:
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1057:
1053:
1049:
1045:
1015:
1011:
4544:
Sardiello M, Palmieri M, di Ronza A, Medina DL, Valenza M, Gennarino VA, et al. (July 2009).
3062:"Microphthalmia-associated transcription factor interacts with LEF-1, a mediator of Wnt signaling"
9546:
4583:
4526:
4236:
Phung B, Sun J, Schepsky A, Steingrimsson E, Rönnstrand L (24 August 2011). Capogrossi MC (ed.).
4123:
3974:
3882:
3839:
3796:
3140:
2872:
2823:
2733:
2342:
2092:
151:
4195:
Phung B, Kazi JU, Lundby A, Bergsteinsdottir K, Sun J, Goding CR, et al. (September 2017).
1193:
1144:
1140:
1136:
1126:
1122:
1110:
1090:
1041:
1037:
1033:
1023:
1019:
1007:
4837:"The X-Linked DDX3X RNA Helicase Dictates Translation Reprogramming and Metastasis in Melanoma"
4397:"A new role for the STAT3 inhibitor, PIAS3: a repressor of microphthalmia transcription factor"
4141:
Wu M, Hemesath TJ, Takemoto CM, Horstmann MA, Wells AG, Price ER, et al. (February 2000).
3634:"LysRS serves as a key signaling molecule in the immune response by regulating gene expression"
9128:
9119:
8756:
7704:
6445:
6440:
4858:
4812:
4760:
4737:
Razin E, Zhang ZC, Nechushtan H, Frenkel S, Lee YN, Arudchandran R, Rivera J (November 1999).
4719:
4683:
4624:
4575:
4518:
4477:
4418:
4377:
4336:
4277:
4218:
4172:
4115:
4072:
4023:
3966:
3931:
3874:
3831:
3788:
3745:
3696:
3655:
3614:
3573:
3524:
3489:
3448:
3407:
3366:
3325:
3273:
3238:
3189:
3132:
3091:
3039:
2995:
2954:
2913:
2864:
2841:
McGill GG, Horstmann M, Widlund HR, Du J, Motyckova G, Nishimura EK, et al. (June 2002).
2815:
2725:
2684:
2620:
2571:
2520:
2469:
2433:
2377:
2334:
2293:
2252:
2198:
2136:
2084:
2049:
1808:
1796:
99:
47:
8939:
8934:
8929:
8924:
8919:
4495:
Mansky KC, Sulzbacher S, Purdom G, Nelsen L, Hume DA, Rehli M, Ostrowski MC (February 2002).
3158:
Loftus SK, Antonellis A, Matera I, Renaud G, Baxter LL, Reid D, et al. (February 2009).
1621:
8011:
7655:
7637:
6206:
6153:
5927:
4848:
4802:
4794:
4750:
4711:
4673:
4663:
4614:
4565:
4508:
4467:
4457:
4408:
4367:
4326:
4316:
4295:
Ngeow KC, Friedrichsen HJ, Li L, Zeng Z, Andrews S, Volpon L, et al. (September 2018).
4267:
4257:
4208:
4162:
4154:
4107:
4062:
4054:
4013:
4005:
3958:
3921:
3913:
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3735:
3727:
3686:
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3563:
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3516:
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3438:
3397:
3356:
3315:
3307:
3265:
3228:
3220:
3179:
3171:
3122:
3109:
Sato-Jin K, Nishimura EK, Akasaka E, Huber W, Nakano H, Miller A, et al. (April 2008).
3081:
3073:
3029:
2985:
2972:
Du J, Widlund HR, Horstmann MA, Ramaswamy S, Ross K, Huber WE, et al. (December 2004).
2944:
2903:
2854:
2805:
2715:
2674:
2664:
2651:
Ascierto PA, Kirkwood JM, Grob JJ, Simeone E, Grimaldi AM, Maio M, et al. (July 2012).
2610:
2602:
2561:
2551:
2510:
2500:
2461:
2425:
2369:
2324:
2283:
2242:
2232:
2188:
2178:
2126:
2076:
2041:
1792:
1765:
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1565:
554:
396:
327:
271:
226:
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9094:
9044:
9034:
9014:
8999:
8979:
8904:
8884:
8026:
8021:
4835:
Phung B, Cieśla M, Sanna A, Guzzi N, Beneventi G, Cao Thi Ngoc P, et al. (June 2019).
3992:
Carmi-Levy I, Motzik A, Ofir-Birin Y, Yagil Z, Yang CM, Kemeny DM, et al. (May 2011).
2637:"Melanoma Skin Cancer. " American Cancer Society, 29. Oct. 2014. Web. 15 October 2014. <
1840:. Looking at the variety of structures gives insight into MITF's varied roles in the cell.
9796:
9019:
8889:
8255:
8213:
8208:
8203:
8141:
8053:
7975:
7763:
7714:
7709:
5756:
4041:
Tshori S, Gilon D, Beeri R, Nechushtan H, Kaluzhny D, Pikarsky E, Razin E (October 2006).
3632:
Yannay-Cohen N, Carmi-Levy I, Kay G, Yang CM, Han JM, Kemeny DM, et al. (June 2009).
3207:
Vetrini F, Auricchio A, Du J, Angeletti B, Fisher DE, Ballabio A, Marigo V (August 2004).
1728:
1382:
As mentioned above, changes in MITF can result in serious health conditions. For example,
1336:
637:
transcription factor activity, RNA polymerase II distal enhancer sequence-specific binding
371:
147:
4601:
Palmieri M, Impey S, Kang H, di Ronza A, Pelz C, Sardiello M, Ballabio A (October 2011).
1702:
conformational change also switches LysRS activity from aminoacylation of Lysine tRNA to
4659:
4561:
4453:
4312:
4253:
4103:
3776:
3716:"4A polymerizes target protein HINT1 to transduce signals in FcεRI-activated mast cells"
2174:
9893:
8173:
8156:
6299:
5954:
4951:
4807:
4782:
4678:
4643:
4331:
4296:
4272:
4237:
4067:
4042:
4018:
3993:
3926:
3901:
3740:
3715:
3320:
3295:
3184:
3159:
2702:
Luchin A, Purdom G, Murphy K, Clark MY, Angel N, Cassady AI, et al. (March 2000).
2679:
2652:
2615:
2590:
2566:
2539:
2515:
2488:
2247:
2220:
2193:
2158:
1935:
1930:
1813:
1391:
1352:
1298:
4472:
4437:
4167:
4142:
3691:
3674:
3568:
3543:
3311:
3269:
3233:
3208:
3086:
3061:
3016:
Meadows NA, Sharma SM, Faulkner GJ, Ostrowski MC, Hume DA, Cassady AI (January 2007).
2859:
2842:
2465:
2373:
2288:
2271:
1335:
locus in mice, and its protumorogenic targets include factors involved in cell death,
813:
808:
803:
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783:
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688:
672:
667:
662:
646:
641:
631:
626:
621:
616:
611:
606:
601:
596:
10336:
8751:
8091:
6516:
6304:
5632:
3886:
3224:
3175:
2810:
2793:
2329:
2312:
1626:
583:
4587:
4530:
4127:
3978:
3144:
2876:
2827:
2737:
2346:
2313:"Fifteen-year quest for microphthalmia-associated transcription factor target genes"
2096:
779:
canonical Wnt signaling pathway involved in negative regulation of apoptotic process
10301:
9613:
9496:
9488:
8859:
8815:
7818:
7666:
3843:
3800:
3343:
Chiaverini C, Beuret L, Flori E, Busca R, Abbe P, Bille K, et al. (May 2008).
1741:
389:
168:
131:
4213:
4196:
3484:
3467:
2949:
2932:
4853:
4836:
4262:
3650:
3633:
3060:
Yasumoto K, Takeda K, Saito H, Watanabe K, Takahashi K, Shibahara S (June 2002).
2183:
1304:
involved in lineage-specific pathway regulation of many types of cells including
155:
9985:
9588:
8068:
7783:
7748:
6137:
5942:
5937:
5380:
5184:
5179:
5075:
4955:
4644:"MITF has a central role in regulating starvation-induced autophagy in melanoma"
2405:. National Institutes of Health, U.S. Department of Health & Human Services.
2019:
National Center for
Biotechnology Information, U.S. National Library of Medicine
2001:
National Center for
Biotechnology Information, U.S. National Library of Medicine
1745:
1671:
1410:
1361:
1309:
1305:
4668:
4442:
Proceedings of the
National Academy of Sciences of the United States of America
4301:
Proceedings of the
National Academy of Sciences of the United States of America
3731:
3294:
Du J, Miller AJ, Widlund HR, Horstmann MA, Ramaswamy S, Fisher DE (July 2003).
3077:
2720:
2703:
2505:
2045:
472:
10297:
10248:
9720:
9324:
9233:
9213:
9186:
8533:
8282:
8131:
8119:
8114:
7113:
7108:
5872:
5867:
5845:
5711:
5529:
5233:
5174:
5169:
5149:
2990:
2973:
2272:"A helix-loop-helix transcription factor-like gene is located at the mi locus"
1679:
1527:
1313:
288:
185:
135:
4755:
4738:
3900:
Carmi-Levy I, Yannay-Cohen N, Kay G, Razin E, Nechushtan H (September 2008).
2556:
10171:
10161:
10144:
9618:
8637:
6342:
5771:
5429:
4570:
4545:
4321:
3520:
3466:
Miller AJ, Du J, Rowan S, Hershey CL, Widlund HR, Fisher DE (January 2004).
2669:
2429:
1886:
1383:
1356:
1355:. Its function is conserved across vertebrates, including in fishes such as
843:
532:
410:
355:
342:
254:
241:
143:
4862:
4816:
4798:
4764:
4723:
4715:
4687:
4628:
4579:
4522:
4481:
4462:
4422:
4413:
4396:
4381:
4372:
4355:
4340:
4281:
4222:
4176:
4076:
4027:
3970:
3935:
3878:
3835:
3792:
3749:
3700:
3659:
3618:
3609:
3592:
3577:
3528:
3493:
3452:
3443:
3426:
3411:
3402:
3385:
3370:
3361:
3344:
3329:
3277:
3242:
3193:
3136:
3095:
3043:
3034:
3017:
2999:
2958:
2917:
2908:
2891:
2868:
2819:
2729:
2688:
2624:
2575:
2524:
2473:
2437:
2338:
2256:
2202:
2088:
2053:
4119:
3714:
Yu J, Liu Z, Liang Y, Luo F, Zhang J, Tian C, et al. (October 2019).
3591:
Han JM, Lee MJ, Park SG, Lee SH, Razin E, Choi EC, Kim S (December 2006).
3127:
3110:
2381:
2297:
2237:
2140:
2131:
2114:
1257:
1252:
636:
30:
9638:
9416:
7778:
6337:
6294:
5346:
4619:
4602:
4513:
4496:
4158:
4009:
3917:
3559:
2606:
1824:
Most transcription factors function in cooperation with other factors by
1733:
1555:
1344:
1343:
synthesis in melanocytes, mutations of MITF can lead to diseases such as
1241:
988:
969:
3827:
3784:
2794:"Novel MITF targets identified using a two-step DNA microarray strategy"
2639:
http://www.cancer.org/acs/groups/cid/documents/webcontent/003120-pdf.pdf
627:
DNA-binding transcription activator activity, RNA polymerase II-specific
617:
DNA-binding transcription repressor activity, RNA polymerase II-specific
10038:
10018:
10013:
9725:
7699:
7483:
5395:
5390:
5385:
5373:
5368:
4297:"BRAF/MAPK and GSK3 signaling converges to control MITF nuclear export"
2591:"Tietz syndrome (hypopigmentation/deafness) caused by mutation of MITF"
1905:
MITF can also be directly translationally modified by the RNA helicase
1748:
responsible for heart growth and for the physiological response of the
1510:
1340:
1281:
955:
910:
3962:
2540:"Waardenburg syndrome: A rare genetic disorder, a report of two cases"
76:
10219:
10214:
10209:
10199:
10194:
9913:
9468:
9463:
9458:
9453:
8719:
8714:
8591:
8586:
8581:
8566:
8557:
8552:
8547:
8526:
8440:
8435:
8223:
8218:
8198:
8193:
8183:
8178:
8016:
7968:
7963:
7958:
7953:
7923:
7918:
7913:
7908:
7878:
7828:
7823:
7586:
7506:
7478:
7473:
7468:
7463:
7458:
7453:
7448:
7443:
7438:
7433:
7428:
7423:
7418:
7413:
7408:
7403:
7398:
7393:
7383:
7378:
7373:
7368:
7363:
7358:
7353:
7343:
7338:
7333:
7293:
7246:
7241:
7236:
7231:
7226:
7221:
7211:
7199:
7194:
6960:
6955:
6950:
6832:
6827:
6799:
6794:
6779:
6774:
6769:
6759:
6754:
6742:
6737:
6109:
6104:
6099:
6094:
6089:
6064:
5991:
5959:
5902:
5897:
5684:
5679:
5674:
5558:
5363:
5253:
5248:
5221:
5216:
5211:
5137:
4058:
2931:
Dynek JN, Chan SM, Liu J, Zha J, Fairbrother WJ, Vucic D (May 2008).
1899:
1784:
1716:
1698:
1653:
1638:
1616:
1609:
1599:
1587:
1577:
1500:
1478:
1225:
865:
647:
DNA-binding transcription factor activity, RNA polymerase II-specific
622:
RNA polymerase II cis-regulatory region sequence-specific DNA binding
4043:"Transcription factor MITF regulates cardiac growth and hypertrophy"
3870:
2398:
2080:
1893:
transcripts increases as well as the translation of the mRNA due to
4354:
Morii E, Oboki K, Kataoka TR, Igarashi K, Kitamura Y (March 2002).
10263:
10241:
10236:
10204:
10093:
10088:
10033:
10028:
10023:
9967:
9876:
9871:
9866:
9861:
9856:
9851:
9846:
9841:
9789:
9784:
9772:
9767:
9762:
9757:
9745:
9740:
9735:
9730:
9699:
9666:
9661:
9656:
9603:
9598:
9593:
9568:
9526:
9521:
9516:
9511:
9506:
9501:
9473:
9426:
9421:
9367:
9362:
9357:
9352:
9329:
9104:
9089:
9084:
9079:
9074:
9069:
9064:
9059:
9054:
9049:
9039:
9029:
9024:
9009:
9004:
8994:
8989:
8984:
8974:
8969:
8964:
8959:
8954:
8949:
8944:
8914:
8909:
8899:
8894:
8879:
8874:
8869:
8864:
8798:
8793:
8788:
8761:
8736:
8704:
8697:
8692:
8598:
8576:
8571:
8543:
8521:
8516:
8511:
8506:
8401:
8396:
8341:
8334:
8329:
8314:
8287:
7948:
7943:
7938:
7933:
7928:
7903:
7898:
7893:
7888:
7883:
7873:
7868:
7863:
7858:
7853:
7848:
7843:
7838:
7833:
7813:
7808:
7803:
7798:
7793:
7788:
7773:
7768:
7593:
7581:
7576:
7571:
7566:
7534:
7529:
7328:
7318:
7313:
7308:
7303:
7298:
7288:
7283:
7278:
7273:
7189:
7179:
7172:
7167:
7162:
7157:
7147:
7091:
7086:
7081:
7076:
7071:
7066:
7061:
6982:
6977:
6972:
6916:
6911:
6810:
6789:
6784:
6658:
6653:
6648:
6643:
6638:
6633:
5840:
5605:
5600:
5595:
5585:
5580:
5575:
5565:
5553:
5503:
5483:
5424:
5412:
5407:
5331:
5324:
5319:
5309:
5302:
5297:
5228:
5159:
5132:
5127:
5110:
5105:
5100:
5095:
5090:
5080:
5068:
5063:
5041:
5031:
5026:
5016:
4111:
2360:
Moore KJ (November 1995). "Insight into the microphthalmia gene".
1906:
1894:
1862:
1848:
1829:
1776:
1772:
1687:
1648:
1631:
1604:
1594:
1582:
1532:
1522:
1495:
1488:
1473:
1456:
1444:
1439:
1434:
2270:
Hughes MJ, Lingrel JB, Krakowsky JM, Anderson KP (October 1993).
1544:
study (which confirmed the above targets) include the following,
828:
824:
10290:
10285:
10280:
10270:
10258:
10253:
10100:
10083:
9947:
9942:
9937:
9908:
9903:
9836:
9831:
9826:
9821:
9816:
9811:
9806:
9801:
9752:
9646:
9608:
9583:
9578:
9573:
9556:
9448:
9441:
9436:
9317:
9312:
9307:
9302:
9297:
9292:
9287:
9282:
9272:
9265:
9255:
9250:
9238:
9228:
9223:
9206:
9201:
9196:
9179:
9174:
9169:
9144:
9139:
9134:
8852:
8847:
8842:
8837:
8832:
8771:
8746:
8741:
8682:
8677:
8672:
8667:
8662:
8657:
8652:
8647:
8642:
8613:
8608:
8501:
8496:
8491:
8486:
8472:
8467:
8462:
8457:
8452:
8423:
8418:
8413:
8379:
8374:
8369:
8364:
8359:
8354:
8319:
8307:
8302:
8297:
8250:
8245:
8240:
8235:
8230:
8151:
8136:
8126:
8102:
8097:
8083:
8078:
8073:
8063:
8058:
8046:
8041:
7985:
7980:
7758:
7743:
7738:
7726:
7721:
7554:
7549:
7544:
7388:
7323:
7268:
7263:
7258:
7142:
7137:
7132:
7056:
7051:
7046:
7041:
7036:
7031:
7026:
7021:
7016:
6999:
6994:
6938:
6933:
6901:
6896:
6891:
6881:
6876:
6869:
6864:
6859:
6854:
6844:
6839:
6822:
6680:
6675:
6670:
6598:
6059:
6054:
6049:
6044:
6039:
6034:
5947:
5932:
5909:
5882:
5855:
5850:
5815:
5793:
5788:
5783:
5766:
5761:
5751:
5741:
5691:
5649:
5644:
5627:
5622:
5617:
5515:
5510:
5498:
5456:
5451:
5441:
5356:
5351:
5341:
5260:
5243:
5206:
5194:
5189:
5164:
5122:
5051:
5046:
5021:
5004:
4999:
4994:
4989:
4984:
4974:
1890:
1856:
1837:
1833:
1780:
1703:
1643:
1560:
1517:
1505:
1328:
1324:
1320:
1288:
123:
10061:
9390:
7632:
6132:
4934:
4892:
563:
9932:
9561:
9551:
9431:
8827:
8384:
7733:
7184:
6921:
6415:
5887:
5716:
5706:
5701:
5493:
5488:
704:
positive regulation of DNA-templated transcription, initiation
4546:"A gene network regulating lysosomal biogenesis and function"
2311:
Cheli Y, Ohanna M, Ballotti R, Bertolotto C (February 2010).
1847:
PIAS3 is a transcriptional inhibiter that acts by inhibiting
2890:
Esumi N, Kachi S, Campochiaro PA, Zack DJ (January 2007).
799:
positive regulation of transcription by RNA polymerase II
699:
negative regulation of transcription by RNA polymerase II
3673:
Lee YN, Nechushtan H, Figov N, Razin E (February 2004).
1740:
Activation of the LysRS-Ap4A-MITF signalling pathway by
379:
3160:"Gpnmb is a melanoblast-expressed, MITF-dependent gene"
2589:
Smith SD, Kelley PM, Kenyon JB, Hoover D (June 2000).
1816:
also increases the presence of MITF in the cytoplasm.
1921:
by DDX3X promotes MITF expression in melanoma cells.
544:
10180:
10140:
10109:
10074:
9999:
9976:
9958:
9708:
9682:
9634:
9537:
9484:
9404:
9338:
9155:
9115:
8811:
8628:
8268:
7994:
7682:
7663:
7651:
7602:
7515:
7494:
6696:
6616:
6587:
6567:
6542:
6505:
6424:
6320:
6168:
6149:
6075:
6020:
5918:
5828:
5804:
5727:
5660:
5524:
5474:
5283:
5269:
4947:
2487:Ballotti R, Cheli Y, Bertolotto C (December 2020).
1682:, in which, the A mitogen-activated protein kinase
1178:
1109:
1075:
1006:
794:
positive regulation of transcription, DNA-templated
2159:"MITF and TFEB cross-regulation in melanoma cells"
1975:
1973:
1971:
1954:
1952:
1950:
1690:) provides the stimulus that starts the cascade.
1678:A-MITF signaling pathway was first discovered in
326:
225:
2787:
2785:
2783:
2781:
2779:
2777:
2775:
2773:
2771:
2769:
2767:
1913:of MITF contains important regulatory elements (
694:regulation of transcription by RNA polymerase II
3289:
3287:
3055:
3053:
3011:
3009:
2765:
2763:
2761:
2759:
2757:
2755:
2753:
2751:
2749:
2747:
4879:Microphthalmia-associated+transcription+factor
4395:Levy C, Nechushtan H, Razin E (January 2002).
1980:GRCm38: Ensembl release 89: ENSMUSG00000035158
1270:Microphthalmia-associated transcription factor
10323:transcription factor/coregulator deficiencies
9394:β-Scaffold factors with minor groove contacts
4904:
1319:MITF, together with transcription factor EB (
8:
2653:"The role of BRAF V600 mutation in melanoma"
1959:GRCh38: Ensembl release 89: ENSG00000187098
759:regulation of cell population proliferation
10071:
10058:
9401:
9387:
7679:
7660:
7648:
7629:
6165:
6146:
6129:
5280:
4944:
4931:
4911:
4897:
4889:
3425:Carreira S, Liu B, Goding CR (July 2000).
1106:
1003:
839:
729:regulation of transcription, DNA-templated
579:
441:Skeletal muscle tissue of rectus abdominis
367:
266:
163:
65:
4881:at the U.S. National Library of Medicine
4852:
4806:
4754:
4677:
4667:
4618:
4569:
4512:
4471:
4461:
4412:
4371:
4330:
4320:
4271:
4261:
4212:
4166:
4066:
4017:
3925:
3739:
3690:
3649:
3608:
3567:
3542:Fang D, Tsuji Y, Setaluri V (July 2002).
3483:
3442:
3401:
3360:
3319:
3232:
3183:
3126:
3085:
3033:
2989:
2948:
2907:
2858:
2809:
2719:
2678:
2668:
2614:
2565:
2555:
2514:
2504:
2328:
2287:
2246:
2236:
2192:
2182:
2130:
1274:class E basic helix-loop-helix protein 32
607:DNA-binding transcription factor activity
1546:
1425:
789:regulation of osteoclast differentiation
769:negative regulation of apoptotic process
425:Skeletal muscle tissue of biceps brachii
1946:
2393:
2391:
719:positive regulation of gene expression
689:regulation of RNA biosynthetic process
20:
4830:
4828:
4826:
4776:
4774:
4190:
4188:
4186:
4047:The Journal of Clinical Investigation
1844:mast cells in association with MITF.
1386:of MITF have been implicated in both
814:negative regulation of cell migration
331:
292:
287:
230:
189:
184:
7:
3164:Pigment Cell & Melanoma Research
2798:Pigment Cell & Melanoma Research
2708:Journal of Bone and Mineral Research
2317:Pigment Cell & Melanoma Research
2214:
2212:
2152:
2150:
2108:
2106:
6077:(1.6) Basic helix-span-helix (bHSH)
4743:The Journal of Biological Chemistry
4401:The Journal of Biological Chemistry
4360:The Journal of Biological Chemistry
3597:The Journal of Biological Chemistry
3431:The Journal of Biological Chemistry
3390:The Journal of Biological Chemistry
3349:The Journal of Biological Chemistry
3022:The Journal of Biological Chemistry
2896:The Journal of Biological Chemistry
2276:The Journal of Biological Chemistry
809:protein-containing complex assembly
1175:
1072:
979:
960:
934:
915:
889:
870:
724:transcription by RNA polymerase II
714:multicellular organism development
549:
467:
405:
384:
14:
3300:The American Journal of Pathology
2657:Journal of Translational Medicine
1704:diadenosine tetraphosphate (Ap4A)
1540:Additional genes identified by a
1284:that in humans is encoded by the
16:Mammalian protein found in humans
3384:Du J, Fisher DE (January 2002).
3225:10.1128/MCB.24.15.6550-6559.2004
3176:10.1111/j.1755-148X.2008.00518.x
2811:10.1111/j.1755-148X.2008.00505.x
2544:Indian Journal of Human Genetics
2330:10.1111/j.1755-148X.2009.00653.x
1752:to beta-adrenergic stimulation.
553:
315:
308:
302:
279:
214:
207:
201:
176:
29:
10064:(0) Other transcription factors
9348:transcriptional enhancer factor
4965:Activating transcription factor
3951:International Journal of Cancer
3998:Molecular and Cellular Biology
3906:Molecular and Cellular Biology
3213:Molecular and Cellular Biology
564:More reference expression data
533:More reference expression data
1:
9278:Interferon regulatory factors
7517:(2.5) Alternating composition
6713:General transcription factors
4214:10.1158/1541-7786.MCR-17-0149
3692:10.1016/S1074-7613(04)00020-2
3485:10.1158/0008-5472.CAN-03-2440
3312:10.1016/S0002-9440(10)63657-7
3270:10.1016/S0024-3205(02)01996-3
2950:10.1158/0008-5472.CAN-07-6622
2860:10.1016/S0092-8674(02)00762-6
2466:10.1016/s0378-1119(03)00817-5
2374:10.1016/s0168-9525(00)89143-x
2289:10.1016/S0021-9258(19)36830-9
1889:starvation of melanoma cells
734:regulation of gene expression
602:protein dimerization activity
300:
199:
8563:Octamer transcription factor
5271:(1.2) Basic helix-loop-helix
4854:10.1016/j.celrep.2019.05.069
4501:Journal of Leukocyte Biology
4263:10.1371/journal.pone.0024064
3651:10.1016/j.molcel.2009.05.019
2184:10.1371/journal.pone.0238546
1866:for proteasome degradation.
1826:protein–protein interactions
709:transcription, DNA-templated
503:Epithelium of choroid plexus
449:myocardium of left ventricle
10343:Genes on human chromosome 3
5337:Myogenic regulatory factors
2595:Journal of Medical Genetics
2538:Kumar S, Rao K (May 2012).
1721:melanoma-associated antigen
1711:or AMP will not affect it.
764:camera-type eye development
10374:
4704:Experimental Cell Research
4669:10.1038/s41598-018-37522-6
3732:10.1038/s41467-019-12710-8
2721:10.1359/jbmr.2000.15.3.451
2506:10.1186/s12943-020-01290-7
2046:10.1016/j.bone.2003.08.014
754:melanocyte differentiation
749:osteoclast differentiation
673:protein-containing complex
507:retinal pigment epithelium
421:retinal pigment epithelium
10318:
10070:
10057:
9400:
9386:
9157:(3.5) Tryptophan clusters
7647:
7628:
6145:
6128:
4943:
4930:
4201:Molecular Cancer Research
2991:10.1016/j.ccr.2004.10.014
2015:"Mouse PubMed Reference:"
1997:"Human PubMed Reference:"
1564:
1559:
1554:
1549:
1443:
1438:
1433:
1428:
1256:
1251:
1247:
1240:
1224:
1205:
1182:
1133:
1102:
1079:
1030:
999:
986:
982:
967:
963:
954:
941:
937:
922:
918:
909:
896:
892:
877:
873:
864:
849:
842:
838:
822:
582:
578:
561:
552:
543:
530:
479:
470:
417:
408:
378:
370:
366:
349:
336:
299:
278:
269:
265:
248:
235:
198:
175:
166:
162:
117:
114:
104:
97:
92:
73:
68:
51:
46:
41:
37:
28:
23:
9978:(4.10) Cold-shock domain
4883:Medical Subject Headings
4756:10.1074/jbc.274.48.34272
4607:Human Molecular Genetics
3078:10.1093/emboj/21.11.2703
2557:10.4103/0971-6866.100804
1919:cis-regulatory sequences
1883:Translational regulation
1878:Translational regulation
1770:receptor tyrosine kinase
1666:A-MITF signaling pathway
4924:intracellular receptors
4787:Genes & Development
4571:10.1126/science.1174447
4322:10.1073/pnas.1810498115
4147:Genes & Development
3521:10.1242/dev.127.24.5379
2670:10.1186/1479-5876-10-85
2430:10.1242/dev.126.17.3757
2403:Genetics Home Reference
2119:Genes & Development
1783:. In addition, several
1211:Chr 3: 69.74 – 69.97 Mb
445:vastus lateralis muscle
4799:10.1101/gad.290940.116
4716:10.1006/excr.2000.4803
4463:10.1073/pnas.072071099
4414:10.1074/jbc.M109236200
4373:10.1074/jbc.M110392200
3610:10.1074/jbc.M605211200
3548:Nucleic Acids Research
3444:10.1074/jbc.M000035200
3403:10.1074/jbc.M110229200
3362:10.1074/jbc.M800130200
3035:10.1074/jbc.M608572200
2909:10.1074/jbc.M609517200
2225:Nucleic Acids Research
2069:Nature Reviews. Cancer
1296:basic helix-loop-helix
519:atrioventricular valve
10348:Transcription factors
9687:TATA-binding proteins
4920:Transcription factors
3720:Nature Communications
3128:10.1096/fj.07-9080com
2132:10.1101/gad.8.22.2770
1373:Clinical significance
739:Wnt signaling pathway
4847:(12): 3573–3586.e7.
4514:10.1189/jlb.71.2.304
4159:10.1101/gad.14.3.301
4010:10.1128/MCB.01159-10
3918:10.1128/MCB.00106-08
2607:10.1136/jmg.37.6.446
1388:Waardenburg syndrome
1349:Waardenburg syndrome
1302:transcription factor
1218:Chr 6: 97.78 – 98 Mb
784:cell fate commitment
744:cell differentiation
333:6 D3|6 45.05 cM
294:Chromosome 6 (mouse)
192:Chromosome 3 (human)
69:List of PDB id codes
42:Available structures
10182:(0.6) Miscellaneous
9713:High-mobility group
9409:Rel homology region
6399:Testicular receptor
6140:DNA-binding domains
4660:2019NatSR...9.1055M
4562:2009Sci...325..473S
4454:2002PNAS...99.4477S
4313:2018PNAS..115E8668N
4307:(37): E8668–E8677.
4254:2011PLoSO...624064P
4104:1998Natur.391..298H
3828:10.1038/onc.2017.81
3785:10.1038/nature05661
3777:2007Natur.445..851G
2238:10.1093/nar/gkz1104
2175:2020PLoSO..1538546B
1859:signaling pathway.
1836:, hUBC9, PKC1, and
1812:oncogenic mutation
1719:recognition of the
9547:p53 p63 p73 family
9120:Heat shock factors
4648:Scientific Reports
4620:10.1093/hmg/ddr306
3560:10.1093/nar/gkf424
2362:Trends in Genetics
1809:SRC protein family
944:ENSMUSG00000035158
682:Biological process
656:Cellular component
590:Molecular function
10330:
10329:
10314:
10313:
10310:
10309:
10053:
10052:
10049:
10048:
9382:
9381:
9378:
9377:
8624:
8623:
8264:
8263:
7624:
7623:
7620:
7619:
6612:
6611:
6468:Mineralocorticoid
6124:
6123:
6120:
6119:
5824:
5823:
4937:(1) Basic domains
4098:(6664): 298–301.
3963:10.1002/ijc.25505
3822:(33): 4732–4738.
1659:
1658:
1538:
1537:
1267:
1266:
1263:
1262:
1236:
1235:
1201:
1200:
1172:
1171:
1098:
1097:
1069:
1068:
995:
994:
976:
975:
950:
949:
931:
930:
905:
904:
886:
885:
834:
833:
632:chromatin binding
574:
573:
570:
569:
539:
538:
526:
525:
464:
463:
362:
361:
261:
260:
88:
87:
84:
83:
52:Ortholog search:
10365:
10154:-related factors
10072:
10059:
9960:(4.9) Grainyhead
9402:
9388:
9340:(3.6) TEA domain
8630:(3.2) Paired box
8271:
8005:
7999:
7693:
7687:
7680:
7676:
7670:
7661:
7649:
7638:Helix-turn-helix
7630:
6592:
6572:
6547:
6510:
6480:Estrogen related
6429:
6325:
6173:
6166:
6154:Nuclear receptor
6147:
6130:
5809:
5730:
5663:
5532:
5477:
5286:
5281:
4945:
4932:
4913:
4906:
4899:
4890:
4867:
4866:
4856:
4832:
4821:
4820:
4810:
4778:
4769:
4768:
4758:
4734:
4728:
4727:
4698:
4692:
4691:
4681:
4671:
4639:
4633:
4632:
4622:
4598:
4592:
4591:
4573:
4541:
4535:
4534:
4516:
4492:
4486:
4485:
4475:
4465:
4433:
4427:
4426:
4416:
4392:
4386:
4385:
4375:
4351:
4345:
4344:
4334:
4324:
4292:
4286:
4285:
4275:
4265:
4233:
4227:
4226:
4216:
4207:(9): 1265–1274.
4192:
4181:
4180:
4170:
4138:
4132:
4131:
4087:
4081:
4080:
4070:
4059:10.1172/JCI27643
4038:
4032:
4031:
4021:
3989:
3983:
3982:
3946:
3940:
3939:
3929:
3897:
3891:
3890:
3854:
3848:
3847:
3811:
3805:
3804:
3760:
3754:
3753:
3743:
3711:
3705:
3704:
3694:
3670:
3664:
3663:
3653:
3629:
3623:
3622:
3612:
3588:
3582:
3581:
3571:
3554:(14): 3096–106.
3539:
3533:
3532:
3504:
3498:
3497:
3487:
3463:
3457:
3456:
3446:
3422:
3416:
3415:
3405:
3381:
3375:
3374:
3364:
3355:(18): 12635–42.
3340:
3334:
3333:
3323:
3291:
3282:
3281:
3253:
3247:
3246:
3236:
3204:
3198:
3197:
3187:
3155:
3149:
3148:
3130:
3106:
3100:
3099:
3089:
3066:The EMBO Journal
3057:
3048:
3047:
3037:
3013:
3004:
3003:
2993:
2969:
2963:
2962:
2952:
2928:
2922:
2921:
2911:
2887:
2881:
2880:
2862:
2838:
2832:
2831:
2813:
2789:
2742:
2741:
2723:
2699:
2693:
2692:
2682:
2672:
2648:
2642:
2635:
2629:
2628:
2618:
2586:
2580:
2579:
2569:
2559:
2535:
2529:
2528:
2518:
2508:
2484:
2478:
2477:
2448:
2442:
2441:
2413:
2407:
2406:
2395:
2386:
2385:
2357:
2351:
2350:
2332:
2308:
2302:
2301:
2291:
2282:(28): 20687–90.
2267:
2261:
2260:
2250:
2240:
2216:
2207:
2206:
2196:
2186:
2154:
2145:
2144:
2134:
2110:
2101:
2100:
2064:
2058:
2057:
2029:
2023:
2022:
2011:
2005:
2004:
1993:
1987:
1977:
1966:
1956:
1807:is dependent on
1547:
1426:
1249:
1248:
1220:
1213:
1196:
1176:
1167:
1107:
1103:RefSeq (protein)
1093:
1073:
1064:
1004:
980:
961:
935:
916:
890:
871:
840:
580:
566:
557:
550:
535:
511:stria vascularis
475:
473:Top expressed in
468:
413:
411:Top expressed in
406:
385:
368:
358:
345:
334:
319:
312:
306:
295:
283:
267:
257:
244:
233:
218:
211:
205:
194:
180:
164:
158:
156:MITF - orthologs
109:
102:
79:
66:
60:
39:
38:
33:
21:
10373:
10372:
10368:
10367:
10366:
10364:
10363:
10362:
10353:Gene expression
10333:
10332:
10331:
10326:
10306:
10176:
10136:
10105:
10066:
10045:
9995:
9972:
9954:
9704:
9678:
9630:
9533:
9480:
9396:
9374:
9334:
9151:
9111:
8807:
8620:
8269:
8260:
8001:
8000:
7995:
7990:
7689:
7688:
7683:
7672:
7671:
7664:
7643:
7616:
7598:
7511:
7499:
7490:
6705:
6701:
6692:
6621:
6618:(2.2) Other Cys
6608:
6588:
6583:
6568:
6563:
6543:
6538:
6506:
6501:
6436:Steroid hormone
6425:
6420:
6321:
6316:
6180:Thyroid hormone
6169:
6160:
6141:
6116:
6071:
6016:
5914:
5820:
5807:
5805:
5800:
5728:
5723:
5661:
5656:
5527:
5525:
5520:
5475:
5470:
5284:
5265:
4939:
4926:
4917:
4875:
4870:
4834:
4833:
4824:
4780:
4779:
4772:
4749:(48): 34272–6.
4736:
4735:
4731:
4700:
4699:
4695:
4641:
4640:
4636:
4613:(19): 3852–66.
4600:
4599:
4595:
4556:(5939): 473–7.
4543:
4542:
4538:
4494:
4493:
4489:
4435:
4434:
4430:
4394:
4393:
4389:
4366:(10): 8566–71.
4353:
4352:
4348:
4294:
4293:
4289:
4235:
4234:
4230:
4194:
4193:
4184:
4140:
4139:
4135:
4089:
4088:
4084:
4053:(10): 2673–81.
4040:
4039:
4035:
4004:(10): 2111–21.
3991:
3990:
3986:
3948:
3947:
3943:
3912:(18): 5777–84.
3899:
3898:
3894:
3871:10.1038/ng.2406
3859:Nature Genetics
3856:
3855:
3851:
3813:
3812:
3808:
3771:(7130): 851–7.
3762:
3761:
3757:
3713:
3712:
3708:
3672:
3671:
3667:
3631:
3630:
3626:
3603:(50): 38663–7.
3590:
3589:
3585:
3541:
3540:
3536:
3515:(24): 5379–89.
3506:
3505:
3501:
3472:Cancer Research
3465:
3464:
3460:
3437:(29): 21920–7.
3424:
3423:
3419:
3383:
3382:
3378:
3342:
3341:
3337:
3293:
3292:
3285:
3255:
3254:
3250:
3206:
3205:
3201:
3157:
3156:
3152:
3108:
3107:
3103:
3072:(11): 2703–14.
3059:
3058:
3051:
3028:(3): 1891–904.
3015:
3014:
3007:
2971:
2970:
2966:
2937:Cancer Research
2930:
2929:
2925:
2889:
2888:
2884:
2840:
2839:
2835:
2791:
2790:
2745:
2701:
2700:
2696:
2650:
2649:
2645:
2636:
2632:
2588:
2587:
2583:
2537:
2536:
2532:
2486:
2485:
2481:
2450:
2449:
2445:
2424:(17): 3757–67.
2415:
2414:
2410:
2397:
2396:
2389:
2359:
2358:
2354:
2310:
2309:
2305:
2269:
2268:
2264:
2218:
2217:
2210:
2169:(9): e0238546.
2156:
2155:
2148:
2125:(22): 2770–80.
2112:
2111:
2104:
2081:10.1038/nrc1947
2066:
2065:
2061:
2031:
2030:
2026:
2013:
2012:
2008:
1995:
1994:
1990:
1978:
1969:
1957:
1948:
1944:
1927:
1880:
1822:
1758:
1756:Phosphorylation
1695:tRNA synthetase
1677:
1668:
1665:
1420:
1408:
1380:
1375:
1337:DNA replication
1258:View/Edit Mouse
1253:View/Edit Human
1216:
1209:
1206:Location (UCSC)
1192:
1188:
1184:
1163:
1159:
1155:
1151:
1147:
1143:
1139:
1135:
1129:
1125:
1121:
1117:
1113:
1089:
1085:
1081:
1060:
1056:
1052:
1048:
1044:
1040:
1036:
1032:
1026:
1022:
1018:
1014:
1010:
925:ENSG00000187098
818:
804:bone remodeling
677:
651:
612:protein binding
562:
531:
522:
517:
515:right ventricle
513:
509:
505:
501:
497:
493:
489:
485:
471:
460:
455:
451:
447:
443:
439:
435:
431:
429:right ventricle
427:
423:
409:
353:
340:
332:
322:
321:
320:
313:
293:
270:Gene location (
252:
239:
231:
221:
220:
219:
212:
190:
167:Gene location (
118:
105:
98:
75:
53:
17:
12:
11:
5:
10371:
10369:
10361:
10360:
10358:Human proteins
10355:
10350:
10345:
10335:
10334:
10328:
10327:
10319:
10316:
10315:
10312:
10311:
10308:
10307:
10305:
10304:
10295:
10294:
10293:
10288:
10283:
10273:
10268:
10267:
10266:
10261:
10256:
10246:
10245:
10244:
10239:
10229:
10224:
10223:
10222:
10217:
10212:
10207:
10202:
10197:
10186:
10184:
10178:
10177:
10175:
10174:
10169:
10164:
10158:
10156:
10138:
10137:
10135:
10134:
10129:
10124:
10118:
10116:
10107:
10106:
10104:
10103:
10098:
10097:
10096:
10091:
10080:
10078:
10068:
10067:
10062:
10055:
10054:
10051:
10050:
10047:
10046:
10044:
10043:
10042:
10041:
10036:
10031:
10026:
10021:
10016:
10005:
10003:
9997:
9996:
9994:
9993:
9988:
9982:
9980:
9974:
9973:
9971:
9970:
9964:
9962:
9956:
9955:
9953:
9952:
9951:
9950:
9945:
9940:
9935:
9925:
9924:
9923:
9918:
9917:
9916:
9911:
9906:
9891:
9886:
9881:
9880:
9879:
9874:
9869:
9864:
9859:
9854:
9849:
9844:
9839:
9834:
9829:
9824:
9819:
9814:
9809:
9804:
9794:
9793:
9792:
9787:
9777:
9776:
9775:
9770:
9765:
9760:
9750:
9749:
9748:
9743:
9738:
9733:
9723:
9717:
9715:
9706:
9705:
9703:
9702:
9697:
9691:
9689:
9680:
9679:
9677:
9676:
9671:
9670:
9669:
9664:
9659:
9654:
9643:
9641:
9632:
9631:
9629:
9628:
9623:
9622:
9621:
9616:
9611:
9606:
9601:
9596:
9591:
9586:
9581:
9576:
9566:
9565:
9564:
9559:
9554:
9543:
9541:
9539:(4.3) p53-like
9535:
9534:
9532:
9531:
9530:
9529:
9524:
9519:
9514:
9509:
9504:
9493:
9491:
9482:
9481:
9479:
9478:
9477:
9476:
9471:
9466:
9461:
9456:
9446:
9445:
9444:
9439:
9434:
9429:
9424:
9413:
9411:
9398:
9397:
9391:
9384:
9383:
9380:
9379:
9376:
9375:
9373:
9372:
9371:
9370:
9365:
9360:
9355:
9344:
9342:
9336:
9335:
9333:
9332:
9327:
9322:
9321:
9320:
9315:
9310:
9305:
9300:
9295:
9290:
9285:
9275:
9270:
9269:
9268:
9263:
9258:
9253:
9243:
9242:
9241:
9236:
9231:
9226:
9216:
9211:
9210:
9209:
9204:
9199:
9189:
9184:
9183:
9182:
9177:
9172:
9161:
9159:
9153:
9152:
9150:
9149:
9148:
9147:
9142:
9137:
9124:
9122:
9113:
9112:
9110:
9109:
9108:
9107:
9102:
9097:
9092:
9087:
9082:
9077:
9072:
9067:
9062:
9057:
9052:
9047:
9042:
9037:
9032:
9027:
9022:
9017:
9012:
9007:
9002:
8997:
8992:
8987:
8982:
8977:
8972:
8967:
8962:
8957:
8952:
8947:
8942:
8937:
8932:
8927:
8922:
8917:
8912:
8907:
8902:
8897:
8892:
8887:
8882:
8877:
8872:
8867:
8857:
8856:
8855:
8850:
8845:
8840:
8835:
8824:
8822:
8809:
8808:
8806:
8805:
8804:
8803:
8802:
8801:
8796:
8791:
8781:
8780:
8779:
8774:
8764:
8759:
8749:
8744:
8739:
8734:
8729:
8724:
8723:
8722:
8717:
8707:
8702:
8701:
8700:
8695:
8687:
8686:
8685:
8680:
8675:
8670:
8665:
8660:
8655:
8650:
8645:
8634:
8632:
8626:
8625:
8622:
8621:
8619:
8618:
8617:
8616:
8611:
8601:
8596:
8595:
8594:
8589:
8584:
8579:
8574:
8569:
8560:
8555:
8550:
8541:
8531:
8530:
8529:
8524:
8519:
8514:
8509:
8504:
8499:
8494:
8489:
8479:
8478:
8477:
8476:
8475:
8470:
8465:
8460:
8455:
8445:
8444:
8443:
8438:
8428:
8427:
8426:
8421:
8416:
8406:
8405:
8404:
8399:
8389:
8388:
8387:
8382:
8377:
8372:
8367:
8362:
8357:
8344:
8339:
8338:
8337:
8332:
8322:
8317:
8312:
8311:
8310:
8305:
8300:
8290:
8285:
8280:
8274:
8272:
8266:
8265:
8262:
8261:
8259:
8258:
8253:
8248:
8243:
8238:
8233:
8228:
8227:
8226:
8221:
8216:
8211:
8206:
8201:
8196:
8191:
8186:
8181:
8176:
8166:
8161:
8160:
8159:
8154:
8144:
8139:
8134:
8129:
8124:
8123:
8122:
8117:
8107:
8106:
8105:
8100:
8088:
8087:
8086:
8081:
8076:
8071:
8066:
8061:
8051:
8050:
8049:
8044:
8034:
8029:
8024:
8019:
8014:
8008:
8006:
7992:
7991:
7989:
7988:
7983:
7978:
7973:
7972:
7971:
7966:
7961:
7956:
7951:
7946:
7941:
7936:
7931:
7926:
7921:
7916:
7911:
7906:
7901:
7896:
7891:
7886:
7881:
7876:
7871:
7866:
7861:
7856:
7851:
7846:
7841:
7836:
7831:
7826:
7821:
7816:
7811:
7806:
7801:
7796:
7791:
7786:
7776:
7771:
7766:
7761:
7757:extended Hox:
7755:
7754:
7753:
7752:
7751:
7746:
7741:
7731:
7730:
7729:
7719:
7718:
7717:
7712:
7696:
7694:
7677:
7658:
7645:
7644:
7633:
7626:
7625:
7622:
7621:
7618:
7617:
7615:
7614:
7608:
7606:
7600:
7599:
7597:
7596:
7591:
7590:
7589:
7584:
7579:
7574:
7569:
7559:
7558:
7557:
7552:
7547:
7537:
7532:
7527:
7521:
7519:
7513:
7512:
7510:
7509:
7503:
7501:
7497:
7492:
7491:
7489:
7488:
7487:
7486:
7481:
7476:
7471:
7466:
7461:
7456:
7451:
7446:
7441:
7436:
7431:
7426:
7421:
7416:
7411:
7406:
7401:
7396:
7391:
7386:
7381:
7376:
7371:
7366:
7361:
7356:
7351:
7346:
7341:
7336:
7331:
7326:
7321:
7316:
7311:
7306:
7301:
7296:
7291:
7286:
7281:
7276:
7271:
7266:
7261:
7251:
7250:
7249:
7244:
7239:
7234:
7229:
7224:
7219:
7214:
7204:
7203:
7202:
7197:
7187:
7182:
7177:
7176:
7175:
7170:
7165:
7160:
7150:
7145:
7140:
7135:
7130:
7129:
7128:
7127:
7126:
7121:
7116:
7111:
7106:
7096:
7095:
7094:
7089:
7084:
7079:
7074:
7069:
7064:
7059:
7054:
7049:
7044:
7039:
7034:
7029:
7024:
7019:
7004:
7003:
7002:
6997:
6987:
6986:
6985:
6980:
6975:
6965:
6964:
6963:
6958:
6953:
6943:
6942:
6941:
6936:
6926:
6925:
6924:
6919:
6914:
6909:
6904:
6899:
6894:
6884:
6879:
6874:
6873:
6872:
6867:
6862:
6857:
6847:
6842:
6837:
6836:
6835:
6830:
6825:
6813:
6807:
6806:
6805:
6804:
6803:
6802:
6797:
6792:
6787:
6782:
6777:
6772:
6767:
6757:
6752:
6747:
6746:
6745:
6740:
6730:
6725:
6720:
6709:
6707:
6703:
6699:
6694:
6693:
6691:
6690:
6685:
6684:
6683:
6678:
6673:
6663:
6662:
6661:
6656:
6651:
6646:
6641:
6636:
6625:
6623:
6619:
6614:
6613:
6610:
6609:
6607:
6606:
6601:
6595:
6593:
6585:
6584:
6582:
6581:
6575:
6573:
6565:
6564:
6562:
6561:
6556:
6550:
6548:
6540:
6539:
6537:
6536:
6535:
6534:
6529:
6524:
6513:
6511:
6503:
6502:
6500:
6499:
6498:
6497:
6492:
6487:
6477:
6476:
6475:
6470:
6465:
6463:Glucocorticoid
6460:
6459:
6458:
6453:
6443:
6432:
6430:
6422:
6421:
6419:
6418:
6413:
6412:
6411:
6406:
6396:
6395:
6394:
6389:
6384:
6374:
6369:
6368:
6367:
6362:
6352:
6347:
6346:
6345:
6340:
6328:
6326:
6318:
6317:
6315:
6314:
6309:
6308:
6307:
6302:
6292:
6291:
6290:
6285:
6280:
6270:
6269:
6268:
6263:
6258:
6248:
6243:
6242:
6241:
6236:
6231:
6221:
6220:
6219:
6214:
6204:
6199:
6194:
6193:
6192:
6187:
6176:
6174:
6163:
6158:
6143:
6142:
6133:
6126:
6125:
6122:
6121:
6118:
6117:
6115:
6114:
6113:
6112:
6107:
6102:
6097:
6092:
6081:
6079:
6073:
6072:
6070:
6069:
6068:
6067:
6062:
6057:
6052:
6047:
6042:
6037:
6026:
6024:
6018:
6017:
6015:
6014:
6013:
6012:
6006:
6005:
6004:
5999:
5989:
5988:
5987:
5982:
5977:
5972:
5967:
5952:
5951:
5950:
5945:
5940:
5935:
5924:
5922:
5916:
5915:
5913:
5912:
5907:
5906:
5905:
5900:
5890:
5885:
5880:
5875:
5870:
5865:
5860:
5859:
5858:
5853:
5843:
5837:
5835:
5826:
5825:
5822:
5821:
5819:
5818:
5812:
5810:
5802:
5801:
5799:
5798:
5797:
5796:
5791:
5786:
5776:
5775:
5774:
5769:
5764:
5759:
5754:
5749:
5744:
5733:
5731:
5725:
5724:
5722:
5721:
5720:
5719:
5714:
5709:
5704:
5694:
5689:
5688:
5687:
5682:
5677:
5666:
5664:
5658:
5657:
5655:
5654:
5653:
5652:
5647:
5637:
5636:
5635:
5630:
5625:
5620:
5610:
5609:
5608:
5603:
5598:
5590:
5589:
5588:
5583:
5578:
5568:
5563:
5562:
5561:
5556:
5546:
5541:
5535:
5533:
5522:
5521:
5519:
5518:
5513:
5508:
5507:
5506:
5501:
5496:
5486:
5480:
5478:
5472:
5471:
5469:
5468:
5463:
5462:
5461:
5460:
5459:
5454:
5444:
5434:
5433:
5432:
5427:
5417:
5416:
5415:
5410:
5400:
5399:
5398:
5393:
5388:
5378:
5377:
5376:
5371:
5361:
5360:
5359:
5354:
5349:
5344:
5334:
5329:
5328:
5327:
5322:
5312:
5307:
5306:
5305:
5300:
5289:
5287:
5278:
5267:
5266:
5264:
5263:
5258:
5257:
5256:
5251:
5246:
5236:
5231:
5226:
5225:
5224:
5219:
5214:
5209:
5199:
5198:
5197:
5192:
5187:
5182:
5172:
5167:
5162:
5157:
5152:
5147:
5142:
5141:
5140:
5135:
5130:
5120:
5119:
5118:
5113:
5108:
5103:
5098:
5093:
5083:
5078:
5073:
5072:
5071:
5066:
5056:
5055:
5054:
5049:
5044:
5039:
5034:
5029:
5024:
5019:
5009:
5008:
5007:
5002:
4997:
4992:
4987:
4982:
4977:
4972:
4961:
4959:
4952:leucine zipper
4941:
4940:
4935:
4928:
4927:
4918:
4916:
4915:
4908:
4901:
4893:
4887:
4886:
4874:
4873:External links
4871:
4869:
4868:
4822:
4770:
4729:
4693:
4634:
4593:
4536:
4487:
4448:(7): 4477–82.
4428:
4387:
4346:
4287:
4228:
4182:
4133:
4082:
4033:
3984:
3957:(8): 1770–82.
3941:
3892:
3865:(10): 1080–3.
3849:
3806:
3755:
3706:
3665:
3638:Molecular Cell
3624:
3583:
3534:
3499:
3458:
3417:
3376:
3335:
3283:
3264:(18): 2171–9.
3248:
3219:(15): 6550–9.
3199:
3150:
3121:(4): 1155–68.
3101:
3049:
3005:
2964:
2943:(9): 3124–32.
2923:
2902:(3): 1838–50.
2882:
2833:
2743:
2694:
2643:
2630:
2581:
2530:
2479:
2443:
2408:
2387:
2352:
2303:
2262:
2231:(2): 934–948.
2208:
2146:
2102:
2075:(8): 593–602.
2059:
2024:
2006:
1988:
1967:
1945:
1943:
1940:
1939:
1938:
1936:Splashed white
1933:
1931:Microphthalmia
1926:
1923:
1879:
1876:
1821:
1818:
1762:phosphorylated
1757:
1754:
1750:cardiomyocytes
1684:(MAPK) pathway
1675:
1667:
1663:
1660:
1657:
1656:
1651:
1646:
1641:
1635:
1634:
1629:
1624:
1619:
1613:
1612:
1607:
1602:
1597:
1591:
1590:
1585:
1580:
1575:
1569:
1568:
1563:
1558:
1553:
1536:
1535:
1530:
1525:
1520:
1514:
1513:
1508:
1503:
1498:
1492:
1491:
1486:
1481:
1476:
1470:
1469:
1464:
1459:
1454:
1448:
1447:
1442:
1437:
1432:
1419:
1416:
1407:
1404:
1392:Tietz syndrome
1379:
1376:
1374:
1371:
1353:Tietz syndrome
1299:leucine zipper
1272:also known as
1265:
1264:
1261:
1260:
1255:
1245:
1244:
1238:
1237:
1234:
1233:
1231:
1229:
1222:
1221:
1214:
1207:
1203:
1202:
1199:
1198:
1180:
1179:
1173:
1170:
1169:
1131:
1130:
1104:
1100:
1099:
1096:
1095:
1077:
1076:
1070:
1067:
1066:
1028:
1027:
1001:
997:
996:
993:
992:
984:
983:
977:
974:
973:
965:
964:
958:
952:
951:
948:
947:
939:
938:
932:
929:
928:
920:
919:
913:
907:
906:
903:
902:
894:
893:
887:
884:
883:
875:
874:
868:
862:
861:
856:
851:
847:
846:
836:
835:
832:
831:
820:
819:
817:
816:
811:
806:
801:
796:
791:
786:
781:
776:
771:
766:
761:
756:
751:
746:
741:
736:
731:
726:
721:
716:
711:
706:
701:
696:
691:
685:
683:
679:
678:
676:
675:
670:
665:
659:
657:
653:
652:
650:
649:
644:
639:
634:
629:
624:
619:
614:
609:
604:
599:
593:
591:
587:
586:
576:
575:
572:
571:
568:
567:
559:
558:
547:
541:
540:
537:
536:
528:
527:
524:
523:
521:
520:
516:
512:
508:
504:
500:
496:
492:
488:
484:
480:
477:
476:
465:
462:
461:
459:
458:
454:
453:deltoid muscle
450:
446:
442:
438:
434:
430:
426:
422:
418:
415:
414:
402:
401:
393:
382:
376:
375:
372:RNA expression
364:
363:
360:
359:
351:
347:
346:
338:
335:
330:
324:
323:
314:
307:
301:
297:
296:
291:
285:
284:
276:
275:
263:
262:
259:
258:
250:
246:
245:
237:
234:
229:
223:
222:
213:
206:
200:
196:
195:
188:
182:
181:
173:
172:
160:
159:
116:
112:
111:
103:
95:
94:
90:
89:
86:
85:
82:
81:
71:
70:
62:
61:
50:
44:
43:
35:
34:
26:
25:
15:
13:
10:
9:
6:
4:
3:
2:
10370:
10359:
10356:
10354:
10351:
10349:
10346:
10344:
10341:
10340:
10338:
10325:
10324:
10317:
10303:
10299:
10296:
10292:
10289:
10287:
10284:
10282:
10279:
10278:
10277:
10274:
10272:
10269:
10265:
10262:
10260:
10257:
10255:
10252:
10251:
10250:
10247:
10243:
10240:
10238:
10235:
10234:
10233:
10230:
10228:
10225:
10221:
10218:
10216:
10213:
10211:
10208:
10206:
10203:
10201:
10198:
10196:
10193:
10192:
10191:
10188:
10187:
10185:
10183:
10179:
10173:
10170:
10168:
10165:
10163:
10160:
10159:
10157:
10155:
10152:
10149:
10146:
10143:
10139:
10133:
10130:
10128:
10125:
10123:
10120:
10119:
10117:
10115:
10114:Pocket domain
10112:
10108:
10102:
10099:
10095:
10092:
10090:
10087:
10086:
10085:
10082:
10081:
10079:
10077:
10076:(0.2) HMGI(Y)
10073:
10069:
10065:
10060:
10056:
10040:
10037:
10035:
10032:
10030:
10027:
10025:
10022:
10020:
10017:
10015:
10012:
10011:
10010:
10007:
10006:
10004:
10002:
9998:
9992:
9989:
9987:
9984:
9983:
9981:
9979:
9975:
9969:
9966:
9965:
9963:
9961:
9957:
9949:
9946:
9944:
9941:
9939:
9936:
9934:
9931:
9930:
9929:
9926:
9922:
9919:
9915:
9912:
9910:
9907:
9905:
9902:
9901:
9900:
9897:
9896:
9895:
9892:
9890:
9887:
9885:
9882:
9878:
9875:
9873:
9870:
9868:
9865:
9863:
9860:
9858:
9855:
9853:
9850:
9848:
9845:
9843:
9840:
9838:
9835:
9833:
9830:
9828:
9825:
9823:
9820:
9818:
9815:
9813:
9810:
9808:
9805:
9803:
9800:
9799:
9798:
9795:
9791:
9788:
9786:
9783:
9782:
9781:
9778:
9774:
9771:
9769:
9766:
9764:
9761:
9759:
9756:
9755:
9754:
9751:
9747:
9744:
9742:
9739:
9737:
9734:
9732:
9729:
9728:
9727:
9724:
9722:
9719:
9718:
9716:
9714:
9711:
9707:
9701:
9698:
9696:
9693:
9692:
9690:
9688:
9685:
9681:
9675:
9672:
9668:
9665:
9663:
9660:
9658:
9655:
9653:
9650:
9649:
9648:
9645:
9644:
9642:
9640:
9637:
9633:
9627:
9624:
9620:
9617:
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5339:
5338:
5335:
5333:
5330:
5326:
5323:
5321:
5318:
5317:
5316:
5313:
5311:
5308:
5304:
5301:
5299:
5296:
5295:
5294:
5291:
5290:
5288:
5282:
5279:
5276:
5272:
5268:
5262:
5259:
5255:
5252:
5250:
5247:
5245:
5242:
5241:
5240:
5237:
5235:
5232:
5230:
5227:
5223:
5220:
5218:
5215:
5213:
5210:
5208:
5205:
5204:
5203:
5200:
5196:
5193:
5191:
5188:
5186:
5183:
5181:
5178:
5177:
5176:
5173:
5171:
5168:
5166:
5163:
5161:
5158:
5156:
5153:
5151:
5148:
5146:
5143:
5139:
5136:
5134:
5131:
5129:
5126:
5125:
5124:
5121:
5117:
5114:
5112:
5109:
5107:
5104:
5102:
5099:
5097:
5094:
5092:
5089:
5088:
5087:
5084:
5082:
5079:
5077:
5074:
5070:
5067:
5065:
5062:
5061:
5060:
5057:
5053:
5050:
5048:
5045:
5043:
5040:
5038:
5035:
5033:
5030:
5028:
5025:
5023:
5020:
5018:
5015:
5014:
5013:
5010:
5006:
5003:
5001:
4998:
4996:
4993:
4991:
4988:
4986:
4983:
4981:
4978:
4976:
4973:
4971:
4968:
4967:
4966:
4963:
4962:
4960:
4957:
4953:
4950:
4946:
4942:
4938:
4933:
4929:
4925:
4921:
4914:
4909:
4907:
4902:
4900:
4895:
4894:
4891:
4884:
4880:
4877:
4876:
4872:
4864:
4860:
4855:
4850:
4846:
4842:
4838:
4831:
4829:
4827:
4823:
4818:
4814:
4809:
4804:
4800:
4796:
4792:
4788:
4784:
4777:
4775:
4771:
4766:
4762:
4757:
4752:
4748:
4744:
4740:
4733:
4730:
4725:
4721:
4717:
4713:
4710:(2): 135–43.
4709:
4705:
4697:
4694:
4689:
4685:
4680:
4675:
4670:
4665:
4661:
4657:
4653:
4649:
4645:
4638:
4635:
4630:
4626:
4621:
4616:
4612:
4608:
4604:
4597:
4594:
4589:
4585:
4581:
4577:
4572:
4567:
4563:
4559:
4555:
4551:
4547:
4540:
4537:
4532:
4528:
4524:
4520:
4515:
4510:
4507:(2): 304–10.
4506:
4502:
4498:
4491:
4488:
4483:
4479:
4474:
4469:
4464:
4459:
4455:
4451:
4447:
4443:
4439:
4432:
4429:
4424:
4420:
4415:
4410:
4407:(3): 1962–6.
4406:
4402:
4398:
4391:
4388:
4383:
4379:
4374:
4369:
4365:
4361:
4357:
4350:
4347:
4342:
4338:
4333:
4328:
4323:
4318:
4314:
4310:
4306:
4302:
4298:
4291:
4288:
4283:
4279:
4274:
4269:
4264:
4259:
4255:
4251:
4248:(8): e24064.
4247:
4243:
4239:
4232:
4229:
4224:
4220:
4215:
4210:
4206:
4202:
4198:
4191:
4189:
4187:
4183:
4178:
4174:
4169:
4164:
4160:
4156:
4153:(3): 301–12.
4152:
4148:
4144:
4137:
4134:
4129:
4125:
4121:
4117:
4113:
4112:10.1038/34681
4109:
4105:
4101:
4097:
4093:
4086:
4083:
4078:
4074:
4069:
4064:
4060:
4056:
4052:
4048:
4044:
4037:
4034:
4029:
4025:
4020:
4015:
4011:
4007:
4003:
3999:
3995:
3988:
3985:
3980:
3976:
3972:
3968:
3964:
3960:
3956:
3952:
3945:
3942:
3937:
3933:
3928:
3923:
3919:
3915:
3911:
3907:
3903:
3896:
3893:
3888:
3884:
3880:
3876:
3872:
3868:
3864:
3860:
3853:
3850:
3845:
3841:
3837:
3833:
3829:
3825:
3821:
3817:
3810:
3807:
3802:
3798:
3794:
3790:
3786:
3782:
3778:
3774:
3770:
3766:
3759:
3756:
3751:
3747:
3742:
3737:
3733:
3729:
3725:
3721:
3717:
3710:
3707:
3702:
3698:
3693:
3688:
3685:(2): 145–51.
3684:
3680:
3676:
3669:
3666:
3661:
3657:
3652:
3647:
3644:(5): 603–11.
3643:
3639:
3635:
3628:
3625:
3620:
3616:
3611:
3606:
3602:
3598:
3594:
3587:
3584:
3579:
3575:
3570:
3565:
3561:
3557:
3553:
3549:
3545:
3538:
3535:
3530:
3526:
3522:
3518:
3514:
3510:
3503:
3500:
3495:
3491:
3486:
3481:
3478:(2): 509–16.
3477:
3473:
3469:
3462:
3459:
3454:
3450:
3445:
3440:
3436:
3432:
3428:
3421:
3418:
3413:
3409:
3404:
3399:
3395:
3391:
3387:
3380:
3377:
3372:
3368:
3363:
3358:
3354:
3350:
3346:
3339:
3336:
3331:
3327:
3322:
3317:
3313:
3309:
3306:(1): 333–43.
3305:
3301:
3297:
3290:
3288:
3284:
3279:
3275:
3271:
3267:
3263:
3259:
3258:Life Sciences
3252:
3249:
3244:
3240:
3235:
3230:
3226:
3222:
3218:
3214:
3210:
3203:
3200:
3195:
3191:
3186:
3181:
3177:
3173:
3170:(1): 99–110.
3169:
3165:
3161:
3154:
3151:
3146:
3142:
3138:
3134:
3129:
3124:
3120:
3116:
3115:FASEB Journal
3112:
3105:
3102:
3097:
3093:
3088:
3083:
3079:
3075:
3071:
3067:
3063:
3056:
3054:
3050:
3045:
3041:
3036:
3031:
3027:
3023:
3019:
3012:
3010:
3006:
3001:
2997:
2992:
2987:
2984:(6): 565–76.
2983:
2979:
2975:
2968:
2965:
2960:
2956:
2951:
2946:
2942:
2938:
2934:
2927:
2924:
2919:
2915:
2910:
2905:
2901:
2897:
2893:
2886:
2883:
2878:
2874:
2870:
2866:
2861:
2856:
2853:(6): 707–18.
2852:
2848:
2844:
2837:
2834:
2829:
2825:
2821:
2817:
2812:
2807:
2804:(6): 665–76.
2803:
2799:
2795:
2788:
2786:
2784:
2782:
2780:
2778:
2776:
2774:
2772:
2770:
2768:
2766:
2764:
2762:
2760:
2758:
2756:
2754:
2752:
2750:
2748:
2744:
2739:
2735:
2731:
2727:
2722:
2717:
2714:(3): 451–60.
2713:
2709:
2705:
2698:
2695:
2690:
2686:
2681:
2676:
2671:
2666:
2662:
2658:
2654:
2647:
2644:
2640:
2634:
2631:
2626:
2622:
2617:
2612:
2608:
2604:
2600:
2596:
2592:
2585:
2582:
2577:
2573:
2568:
2563:
2558:
2553:
2549:
2545:
2541:
2534:
2531:
2526:
2522:
2517:
2512:
2507:
2502:
2498:
2494:
2490:
2483:
2480:
2475:
2471:
2467:
2463:
2459:
2455:
2447:
2444:
2439:
2435:
2431:
2427:
2423:
2419:
2412:
2409:
2404:
2400:
2394:
2392:
2388:
2383:
2379:
2375:
2371:
2368:(11): 442–8.
2367:
2363:
2356:
2353:
2348:
2344:
2340:
2336:
2331:
2326:
2322:
2318:
2314:
2307:
2304:
2299:
2295:
2290:
2285:
2281:
2277:
2273:
2266:
2263:
2258:
2254:
2249:
2244:
2239:
2234:
2230:
2226:
2222:
2215:
2213:
2209:
2204:
2200:
2195:
2190:
2185:
2180:
2176:
2172:
2168:
2164:
2160:
2153:
2151:
2147:
2142:
2138:
2133:
2128:
2124:
2120:
2116:
2109:
2107:
2103:
2098:
2094:
2090:
2086:
2082:
2078:
2074:
2070:
2063:
2060:
2055:
2051:
2047:
2043:
2040:(4): 689–96.
2039:
2035:
2028:
2025:
2020:
2016:
2010:
2007:
2002:
1998:
1992:
1989:
1985:
1981:
1976:
1974:
1972:
1968:
1964:
1960:
1955:
1953:
1951:
1947:
1941:
1937:
1934:
1932:
1929:
1928:
1924:
1922:
1920:
1916:
1912:
1908:
1903:
1901:
1896:
1892:
1888:
1884:
1877:
1875:
1871:
1867:
1864:
1860:
1858:
1852:
1850:
1845:
1841:
1839:
1835:
1831:
1827:
1819:
1817:
1815:
1810:
1806:
1802:
1798:
1794:
1790:
1786:
1782:
1778:
1774:
1771:
1767:
1766:MAPK/BRAF/ERK
1763:
1755:
1753:
1751:
1747:
1743:
1742:isoproterenol
1738:
1735:
1730:
1726:
1722:
1718:
1712:
1710:
1705:
1700:
1696:
1691:
1689:
1685:
1681:
1673:
1661:
1655:
1652:
1650:
1647:
1645:
1642:
1640:
1637:
1636:
1633:
1630:
1628:
1625:
1623:
1620:
1618:
1615:
1614:
1611:
1608:
1606:
1603:
1601:
1598:
1596:
1593:
1592:
1589:
1586:
1584:
1581:
1579:
1576:
1574:
1571:
1570:
1567:
1562:
1557:
1552:
1548:
1545:
1543:
1534:
1531:
1529:
1526:
1524:
1521:
1519:
1516:
1515:
1512:
1509:
1507:
1504:
1502:
1499:
1497:
1494:
1493:
1490:
1487:
1485:
1482:
1480:
1477:
1475:
1472:
1471:
1468:
1465:
1463:
1460:
1458:
1455:
1453:
1450:
1449:
1446:
1441:
1436:
1431:
1427:
1424:
1417:
1415:
1412:
1405:
1403:
1399:
1395:
1393:
1389:
1385:
1377:
1372:
1370:
1366:
1364:
1363:
1358:
1354:
1350:
1346:
1342:
1338:
1334:
1330:
1326:
1322:
1317:
1315:
1311:
1307:
1303:
1300:
1297:
1292:
1290:
1287:
1283:
1279:
1275:
1271:
1259:
1254:
1250:
1246:
1243:
1239:
1232:
1230:
1227:
1223:
1219:
1215:
1212:
1208:
1204:
1197:
1195:
1191:
1187:
1181:
1177:
1174:
1168:
1166:
1162:
1158:
1154:
1150:
1146:
1142:
1138:
1132:
1128:
1124:
1120:
1116:
1112:
1108:
1105:
1101:
1094:
1092:
1088:
1084:
1078:
1074:
1071:
1065:
1063:
1059:
1055:
1051:
1047:
1043:
1039:
1035:
1029:
1025:
1021:
1017:
1013:
1009:
1005:
1002:
1000:RefSeq (mRNA)
998:
991:
990:
985:
981:
978:
972:
971:
966:
962:
959:
957:
953:
946:
945:
940:
936:
933:
927:
926:
921:
917:
914:
912:
908:
901:
900:
895:
891:
888:
882:
881:
876:
872:
869:
867:
863:
860:
857:
855:
852:
848:
845:
841:
837:
830:
826:
821:
815:
812:
810:
807:
805:
802:
800:
797:
795:
792:
790:
787:
785:
782:
780:
777:
775:
772:
770:
767:
765:
762:
760:
757:
755:
752:
750:
747:
745:
742:
740:
737:
735:
732:
730:
727:
725:
722:
720:
717:
715:
712:
710:
707:
705:
702:
700:
697:
695:
692:
690:
687:
686:
684:
681:
680:
674:
671:
669:
666:
664:
661:
660:
658:
655:
654:
648:
645:
643:
642:E-box binding
640:
638:
635:
633:
630:
628:
625:
623:
620:
618:
615:
613:
610:
608:
605:
603:
600:
598:
595:
594:
592:
589:
588:
585:
584:Gene ontology
581:
577:
565:
560:
556:
551:
548:
546:
542:
534:
529:
518:
514:
510:
506:
502:
498:
494:
490:
486:
482:
481:
478:
474:
469:
466:
456:
452:
448:
444:
440:
436:
432:
428:
424:
420:
419:
416:
412:
407:
404:
403:
400:
398:
394:
392:
391:
387:
386:
383:
381:
377:
373:
369:
365:
357:
352:
348:
344:
339:
329:
325:
318:
311:
305:
298:
290:
286:
282:
277:
273:
268:
264:
256:
251:
247:
243:
238:
228:
224:
217:
210:
204:
197:
193:
187:
183:
179:
174:
170:
165:
161:
157:
153:
149:
145:
141:
137:
133:
129:
125:
121:
113:
108:
101:
96:
91:
80:
78:
72:
67:
64:
63:
59:
56:
49:
45:
40:
36:
32:
27:
22:
19:
10320:
10275:
10231:
10189:
10181:
10153:
10147:
10141:
10110:
10075:
10063:
10000:
9977:
9959:
9927:
9898:
9779:
9709:
9683:
9635:
9538:
9485:
9405:
9393:
9347:
9339:
9245:
9191:
9164:
9156:
9127:
9116:
8860:FOX proteins
8820:winged helix
8812:
8783:
8766:
8709:
8629:
8603:
8481:
8447:
8430:
8408:
8391:
8324:
8292:
8146:
8109:
8090:
8036:
8002:
7996:
7690:
7684:
7673:
7667:Antennapedia
7665:
7652:
7640:
7634:
7603:
7561:
7539:
7516:
7495:
7253:
7206:
7152:
7098:
7011:
6989:
6967:
6945:
6928:
6886:
6815:
6697:
6665:
6617:
6589:
6569:
6544:
6507:
6473:Progesterone
6426:
6322:
6170:
6156:
6150:
6134:
6076:
6029:
6021:
5919:
5862:
5829:
5778:
5736:
5696:
5669:
5639:
5612:
5446:
5436:
5419:
5402:
5314:
5270:
5238:
5201:
5058:
4948:
4936:
4844:
4841:Cell Reports
4840:
4793:(1): 18–33.
4790:
4786:
4746:
4742:
4732:
4707:
4703:
4696:
4651:
4647:
4637:
4610:
4606:
4596:
4553:
4549:
4539:
4504:
4500:
4490:
4445:
4441:
4431:
4404:
4400:
4390:
4363:
4359:
4349:
4304:
4300:
4290:
4245:
4241:
4231:
4204:
4200:
4150:
4146:
4136:
4095:
4091:
4085:
4050:
4046:
4036:
4001:
3997:
3987:
3954:
3950:
3944:
3909:
3905:
3895:
3862:
3858:
3852:
3819:
3815:
3809:
3768:
3764:
3758:
3723:
3719:
3709:
3682:
3678:
3668:
3641:
3637:
3627:
3600:
3596:
3586:
3551:
3547:
3537:
3512:
3508:
3502:
3475:
3471:
3461:
3434:
3430:
3420:
3396:(1): 402–6.
3393:
3389:
3379:
3352:
3348:
3338:
3303:
3299:
3261:
3257:
3251:
3216:
3212:
3202:
3167:
3163:
3153:
3118:
3114:
3104:
3069:
3065:
3025:
3021:
2981:
2977:
2967:
2940:
2936:
2926:
2899:
2895:
2885:
2850:
2846:
2836:
2801:
2797:
2711:
2707:
2697:
2660:
2656:
2646:
2633:
2601:(6): 446–8.
2598:
2594:
2584:
2550:(2): 254–5.
2547:
2543:
2533:
2496:
2492:
2482:
2457:
2453:
2446:
2421:
2417:
2411:
2402:
2365:
2361:
2355:
2323:(1): 27–40.
2320:
2316:
2306:
2279:
2275:
2265:
2228:
2224:
2166:
2162:
2122:
2118:
2072:
2068:
2062:
2037:
2033:
2027:
2018:
2009:
2000:
1991:
1904:
1881:
1872:
1868:
1861:
1853:
1846:
1842:
1823:
1820:Interactions
1759:
1739:
1725:neuropathies
1715:through the
1713:
1692:
1669:
1662:The LysRS-Ap
1539:
1421:
1418:Target genes
1409:
1400:
1396:
1381:
1367:
1360:
1332:
1318:
1293:
1285:
1277:
1273:
1269:
1268:
1190:NP_001171520
1186:NP_001106669
1183:
1165:NP_001341537
1161:NP_001341536
1157:NP_001341535
1153:NP_001341534
1149:NP_001341533
1134:
1119:NP_001171897
1115:NP_001171896
1087:NM_001178049
1083:NM_001113198
1080:
1062:NM_001354608
1058:NM_001354607
1054:NM_001354606
1050:NM_001354605
1046:NM_001354604
1031:
1016:NM_001184968
1012:NM_001184967
987:
968:
942:
923:
897:
878:
858:
853:
774:pigmentation
499:ciliary body
483:pineal gland
395:
388:
115:External IDs
74:
18:
10001:(4.11) Runt
7656:Homeodomain
7254:zinc finger
6590:subfamily 0
6570:subfamily 6
6545:subfamily 5
6508:subfamily 4
6427:subfamily 3
6323:subfamily 2
6171:subfamily 1
6138:Zinc finger
5381:Neurogenins
4949:(1.1) Basic
4654:(1): 1055.
3726:(1): 4664.
3509:Development
2978:Cancer Cell
2418:Development
2399:"MITF gene"
1746:hypertrophy
1411:Melanocytes
1362:Xiphophorus
1310:osteoclasts
1306:melanocytes
663:nucleoplasm
597:DNA binding
354:97,998,310
341:97,784,013
253:69,968,336
240:69,739,456
93:Identifiers
10337:Categories
8534:POU domain
7674:ANTP class
7604:(2.6) WRKY
6887:GLI family
6022:(1.5) RF-X
5920:(1.4) NF-1
2499:(1): 170.
2493:Mol Cancer
2460:: 117–26.
1986:, May 2017
1965:, May 2017
1942:References
1902:by eIF2α.
1787:including
1734:importin-β
1680:mast cells
1542:microarray
1314:mast cells
1294:MITF is a
437:myocardium
399:(ortholog)
136:HomoloGene
10321:see also
10162:Apetala 2
8816:Fork head
7496:(2.4) Cys
6698:(2.3) Cys
5430:Scleraxis
3887:205345993
1887:glutamine
1384:mutations
1378:Mutations
1357:zebrafish
1194:NP_032627
1145:NP_937821
1141:NP_937820
1137:NP_937802
1127:NP_937801
1123:NP_006713
1111:NP_000239
1091:NM_008601
1042:NM_198178
1038:NM_198177
1034:NM_198159
1024:NM_198158
1020:NM_006722
1008:NM_000248
844:Orthologs
144:GeneCards
9639:MADS box
7779:Homeobox
7691:Hox-like
7685:protoHOX
6446:Estrogen
6441:Androgen
6295:Rev-ErbA
5833:bHLH-ZIP
5808:bHLH-COE
5347:Myogenin
4863:31216476
4817:28096186
4765:10567402
4724:10694430
4688:30705290
4629:21752829
4588:20353685
4580:19556463
4531:22801820
4523:11818452
4482:11930005
4423:11709556
4382:11751862
4341:30150413
4282:21887372
4242:PLOS ONE
4223:28584020
4177:10673502
4128:26589863
4077:16998588
4028:21402779
3979:26481581
3971:20533549
3936:18644867
3879:22961002
3836:28394346
3816:Oncogene
3793:17314971
3750:31604935
3701:14975237
3679:Immunity
3660:19524539
3619:17062567
3578:12136092
3529:11076759
3494:14744763
3453:10770922
3412:11700328
3371:18281284
3330:12819038
3278:12204775
3243:15254223
3194:18983539
3145:14304386
3137:18039926
3096:12032083
3044:17105730
3000:15607961
2959:18451137
2918:17085443
2877:14863011
2869:12086670
2828:24698373
2820:19067971
2738:24064612
2730:10750559
2689:22554099
2625:10851256
2576:23162308
2525:33276788
2474:14597395
2438:10433906
2347:43471663
2339:19995375
2257:31777941
2203:32881934
2163:PLOS ONE
2097:20829389
2089:16862190
2054:15050900
1982:–
1961:–
1925:See also
1760:MITF is
1556:TNFRSF14
1406:Melanoma
1345:melanoma
1242:Wikidata
823:Sources:
487:gastrula
10039:RUNX1T1
10019:CBFA2T3
10014:CBFA2T2
9894:TCF/LEF
8003:NK-like
7997:metaHOX
7700:ParaHox
7641:domains
6332:COUP-TF
5806:Group F
5729:Group E
5662:Group D
5526:Group C
5476:Group B
5420:Paraxis
5285:Group A
4808:5287109
4679:6355916
4656:Bibcode
4558:Bibcode
4550:Science
4450:Bibcode
4332:6140509
4309:Bibcode
4273:3161112
4250:Bibcode
4120:9440696
4100:Bibcode
4068:1570375
4019:3133347
3927:2546939
3844:6790116
3801:4421616
3773:Bibcode
3741:6789022
3321:1868174
3185:2714741
2680:3391993
2616:1734605
2567:3491306
2516:7718690
2382:8578601
2298:8407885
2248:6954422
2194:7470386
2171:Bibcode
2141:7958932
1984:Ensembl
1963:Ensembl
1805:pathway
1785:kinases
1622:TBC1D16
1511:SLC45A2
1341:melanin
1282:protein
1278:bHLHe32
956:UniProt
911:Ensembl
850:Species
829:QuickGO
668:nucleus
491:decidua
457:urethra
374:pattern
100:Aliases
8752:Bicoid
8017:BARHL2
8012:BARHL1
7594:JMJD1B
7507:HIVEP1
5992:I-SMAD
5960:R-SMAD
5878:MLXIPL
5633:Period
5559:ARNTL2
5364:NeuroD
4885:(MeSH)
4861:
4815:
4805:
4763:
4722:
4686:
4676:
4627:
4586:
4578:
4529:
4521:
4480:
4473:123673
4470:
4421:
4380:
4339:
4329:
4280:
4270:
4221:
4175:
4168:316361
4165:
4126:
4118:
4092:Nature
4075:
4065:
4026:
4016:
3977:
3969:
3934:
3924:
3885:
3877:
3842:
3834:
3799:
3791:
3765:Nature
3748:
3738:
3699:
3658:
3617:
3576:
3569:135745
3566:
3527:
3492:
3451:
3410:
3369:
3328:
3318:
3276:
3241:
3234:444869
3231:
3192:
3182:
3143:
3135:
3094:
3087:126018
3084:
3042:
2998:
2957:
2916:
2875:
2867:
2826:
2818:
2736:
2728:
2687:
2677:
2663:: 85.
2623:
2613:
2574:
2564:
2523:
2513:
2472:
2436:
2380:
2345:
2337:
2296:
2255:
2245:
2201:
2191:
2139:
2095:
2087:
2052:
1911:5' UTR
1909:. The
1717:T-cell
1699:Serine
1693:Lysyl-
1654:SLC7A8
1639:MICAL1
1617:SLC1A4
1610:FRMD4B
1600:LGALS3
1588:INPP4B
1578:APOLD1
1566:RBM35A
1501:RAB27A
1479:GPR143
1351:, and
1312:, and
1228:search
1226:PubMed
989:Q08874
970:O75030
866:Entrez
545:BioGPS
433:glutes
132:104554
124:156845
10302:Sigma
10167:EREBP
10151:EREBP
10142:(0.5)
10111:(0.3)
10034:RUNX3
10029:RUNX2
10024:RUNX1
9968:TFCP2
9889:SSRP1
9710:(4.7)
9700:TBPL1
9684:(4.6)
9636:(4.4)
9486:(4.2)
9427:NFKB2
9422:NFKB1
9417:NF-κB
9406:(4.1)
9330:MYBL2
9117:(3.4)
8813:(3.3)
8762:BICD2
8737:SHOX2
8705:PROP1
8689:PRRX
8599:SATB2
8544:BRN-3
8539:PIT-1
8431:PKNOX
8346:TALE
8342:NOBOX
8315:HESX1
8288:CUTL1
8270:other
8164:NANOG
8027:BARX2
8022:BARX1
7774:MEOX2
7769:MEOX1
7653:(3.1)
7562:JARID
7535:GRLF1
7530:DIDO1
7190:Zbtb7
7180:TSHZ3
7148:PRDM9
6946:HIVEP
6811:ATBF1
6765:TFIIH
6750:TFIIF
6733:TFIIE
6728:TFIID
6723:TFIIB
6718:TFIIA
6688:TRPS1
6554:LRH-1
6532:NURR1
6522:NGFIB
6350:Ear-2
6151:(2.1)
5893:SREBP
5830:(1.3)
5592:NPAS
5581:EPAS1
5566:CLOCK
5554:ARNTL
5528:bHLH-
5504:n-Myc
5499:l-Myc
5494:c-Myc
5484:FIGLA
5466:Twist
5425:TCF15
5332:MESP2
5310:ATOH1
5303:ASCL2
5298:ASCL1
5229:NFIL3
5160:GABPA
5155:DDIT3
5086:C/EBP
5081:BLZF1
5042:c-Jun
5032:FOSL2
5027:FOSL1
5017:c-Fos
4584:S2CID
4527:S2CID
4124:S2CID
3975:S2CID
3883:S2CID
3840:S2CID
3797:S2CID
3141:S2CID
2873:S2CID
2824:S2CID
2734:S2CID
2343:S2CID
2093:S2CID
1907:DDX3X
1900:eIF2B
1895:eIF2α
1849:STAT3
1830:PIAS3
1814:D816V
1777:GSK-3
1729:Nudix
1688:FcεRI
1672:LysRS
1649:ITPKB
1632:ASAH1
1605:GREB1
1595:CAPN3
1583:KCNN2
1573:PLA1A
1533:TYRP1
1523:TRPM1
1496:OSTM1
1489:MLANA
1474:GPNMB
1467:EDNRB
1457:CLCN7
1445:BIRC7
1440:BEST1
1280:is a
899:17342
859:Mouse
854:Human
825:Amigo
397:Mouse
390:Human
337:Start
272:Mouse
236:Start
169:Human
10271:MNDA
10190:ARID
10145:AP-2
10132:RBL2
10127:RBL1
10101:HBP1
10084:HMGA
9991:YBX1
9986:CSDA
9921:LEF1
9753:HMGN
9726:HMGB
9647:Mef2
9626:MYRF
9614:TBR2
9609:TBR1
9557:TP63
9497:STAT
9489:STAT
9449:NFAT
9442:RELB
9437:RELA
9392:(4)
9273:FLI1
9239:SPIB
8940:D4L6
8935:D4L5
8930:D4L4
8925:D4L3
8920:D4L1
8784:PITX
8747:VSX2
8742:VSX1
8732:SHOX
8710:PHOX
8392:MEIS
8320:HOPX
8256:VAX2
8251:VAX1
8246:TLX3
8241:TLX2
8236:TLX1
8231:NATO
8214:HMX3
8209:HMX2
8204:HMX1
8142:LBX2
8137:LBX1
8127:HHEX
7986:MNX1
7981:GBX2
7976:GBX1
7764:Evx2
7759:Evx1
7727:PDX1
7722:Xlox
7612:WRKY
7525:AIRE
7484:804A
7207:ZBTB
7153:SALL
7143:OSR1
7138:MYT1
7133:MTF1
6968:IKZF
6907:REST
6882:GFI1
6877:ERV3
6845:E4F1
6840:CTCF
6629:GATA
6599:DAX1
6579:GCNF
6527:NOR1
6355:HNF4
6224:PPAR
6157:(Cys
6085:AP-2
5955:SMAD
5910:USF1
5883:MXI1
5863:MITF
5856:MXD3
5851:MXD1
5841:AP-4
5816:EBF1
5692:Pho4
5670:BHLH
5549:ARNT
5544:AHRR
5516:TCF4
5511:MXD4
5442:LYL1
5403:OLIG
5357:MYF6
5352:MYF5
5342:MyoD
5315:HAND
5293:AS-C
5275:bHLH
5261:XBP1
5165:GCN4
5145:CREM
5123:CREB
5076:BATF
5059:BACH
5052:JunD
5047:JUNB
5037:JDP2
5022:FOSB
5012:AP-1
4970:AATF
4956:bZIP
4922:and
4859:PMID
4813:PMID
4761:PMID
4720:PMID
4684:PMID
4625:PMID
4576:PMID
4519:PMID
4478:PMID
4419:PMID
4378:PMID
4337:PMID
4278:PMID
4219:PMID
4173:PMID
4116:PMID
4073:PMID
4024:PMID
3967:PMID
3932:PMID
3875:PMID
3832:PMID
3789:PMID
3746:PMID
3697:PMID
3656:PMID
3615:PMID
3574:PMID
3525:PMID
3490:PMID
3449:PMID
3408:PMID
3367:PMID
3326:PMID
3274:PMID
3239:PMID
3190:PMID
3133:PMID
3092:PMID
3040:PMID
2996:PMID
2955:PMID
2914:PMID
2865:PMID
2847:Cell
2816:PMID
2726:PMID
2685:PMID
2641:>
2621:PMID
2572:PMID
2521:PMID
2470:PMID
2454:Gene
2434:PMID
2378:PMID
2335:PMID
2294:PMID
2253:PMID
2199:PMID
2137:PMID
2085:PMID
2050:PMID
2034:Bone
1915:IRES
1891:ATF4
1863:UBC9
1857:mTOR
1838:LEF1
1834:Tfe3
1799:and
1789:PI3K
1781:mTOR
1779:and
1670:The
1644:TMC6
1627:GMPR
1561:IRF4
1518:TBX2
1506:SILV
1484:MC1R
1452:CDK2
1435:BCL2
1430:ACP5
1390:and
1359:and
1329:TFEC
1327:and
1325:TFE3
1321:TFEB
1289:gene
1286:MITF
880:4286
495:iris
380:Bgee
328:Band
289:Chr.
232:3p13
227:Band
186:Chr.
148:MITF
140:4892
120:OMIM
107:MITF
77:4C7N
58:RCSB
55:PDBe
24:MITF
10298:Rho
10276:NFY
10249:MLL
10232:IFI
10227:CAP
10009:CBF
9928:TOX
9899:TCF
9884:SRY
9797:SOX
9780:HNF
9721:BBX
9695:TBP
9674:SRF
9619:TFT
9569:TBX
9562:p73
9552:p53
9432:REL
9325:MYB
9246:ETV
9234:ERG
9219:ETS
9214:ERF
9192:ELK
9187:EGF
9165:ELF
9129:HSF
8828:E2F
8767:OTX
8757:GSC
8727:RAX
8638:PAX
8604:ZEB
8577:3/4
8527:21A
8482:PHF
8448:SIX
8409:PBX
8385:MKX
8350:IRX
8325:LMX
8293:FHL
8283:CRX
8278:ARX
8224:6-2
8219:6-1
8199:3-2
8194:3-1
8189:2-5
8184:2-3
8179:2-2
8174:2-1
8169:NKX
8147:MSX
8132:HLX
8092:EMX
8054:DLX
8037:DBX
8032:BSX
7969:D13
7964:D12
7959:D11
7954:D10
7924:C13
7919:C12
7914:C11
7909:C10
7879:B13
7829:A13
7824:A11
7819:A10
7734:Cdx
7705:Gsx
7635:(3)
7540:ING
7479:655
7474:649
7469:644
7464:638
7459:593
7454:471
7449:452
7444:451
7439:423
7434:384
7429:366
7424:365
7419:350
7414:346
7409:330
7404:318
7399:300
7394:281
7389:268
7384:267
7379:259
7374:239
7369:238
7364:219
7359:217
7354:202
7349:165
7344:148
7339:146
7334:143
7294:33B
7185:WT1
7012:KLF
6990:ILF
6929:HIC
6922:YY1
6850:EGR
6833:11B
6828:11A
6817:BCL
6800:3C2
6795:3C1
6702:His
6666:MTA
6604:SHP
6559:SF1
6517:NUR
6416:TLX
6377:RXR
6372:PNR
6312:VDR
6273:ROR
6251:RAR
6246:PXR
6234:β/δ
6207:LXR
6202:FXR
6197:CAR
6135:(2)
6065:ANK
6030:RFX
5928:NFI
5888:Myc
5873:MLX
5868:MNT
5846:MAX
5779:HEY
5737:HES
5640:SIM
5613:PER
5571:HIF
5539:AhR
5530:PAS
5489:Myc
5447:TAL
5437:SLC
5239:NRF
5234:NRL
5202:NFE
5175:MAF
5170:HLF
5150:DBP
4849:doi
4803:PMC
4795:doi
4751:doi
4747:274
4712:doi
4708:255
4674:PMC
4664:doi
4615:doi
4566:doi
4554:325
4509:doi
4468:PMC
4458:doi
4409:doi
4405:277
4368:doi
4364:277
4327:PMC
4317:doi
4305:115
4268:PMC
4258:doi
4209:doi
4163:PMC
4155:doi
4108:doi
4096:391
4063:PMC
4055:doi
4051:116
4014:PMC
4006:doi
3959:doi
3955:128
3922:PMC
3914:doi
3867:doi
3824:doi
3781:doi
3769:445
3736:PMC
3728:doi
3687:doi
3646:doi
3605:doi
3601:281
3564:PMC
3556:doi
3517:doi
3513:127
3480:doi
3439:doi
3435:275
3398:doi
3394:277
3357:doi
3353:283
3316:PMC
3308:doi
3304:163
3266:doi
3229:PMC
3221:doi
3180:PMC
3172:doi
3123:doi
3082:PMC
3074:doi
3030:doi
3026:282
2986:doi
2945:doi
2904:doi
2900:282
2855:doi
2851:109
2806:doi
2716:doi
2675:PMC
2665:doi
2611:PMC
2603:doi
2562:PMC
2552:doi
2511:PMC
2501:doi
2462:doi
2458:320
2426:doi
2422:126
2370:doi
2325:doi
2284:doi
2280:268
2243:PMC
2233:doi
2189:PMC
2179:doi
2127:doi
2077:doi
2042:doi
1801:P38
1797:SRC
1793:AKT
1773:KIT
1709:ATP
1674:-Ap
1551:MBP
1528:TYR
1462:DCT
1323:),
1276:or
350:End
249:End
152:OMA
128:MGI
48:PDB
10339::
10264:T1
10242:35
10237:16
10220:4A
10215:3B
10210:3A
10200:1B
10195:1A
10172:B3
10122:Rb
9877:21
9872:18
9867:15
9862:14
9857:13
9852:12
9847:11
9842:10
9790:1B
9785:1A
9604:22
9599:21
9594:19
9469:C4
9464:C3
9459:C2
9454:C1
9105:S1
9100:R2
9095:R1
9090:Q1
9085:P4
9080:P3
9075:P2
9070:P1
9065:O6
9060:O4
9055:O3
9050:O1
9045:N4
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