1229:
choroidal plexus, and endothelial cells are linked to increased UCP2 mRNA levels. Mitochondrial-associated diseases are neuroprotective in several neurodegenerative diseases, including T2D-induced neuronal death, SCZ obesity, inflammatory disease, cancer, and cerebral ischemia (Kumar, 2022). Because of mitochondrial malfunction and modifications to synaptic plasticity, multiple diseases are linked to UCP2. In the damaged area of the brain after a brain injury, UP2 expression rises. In the brain, UCP2's ultimate role is in neuronal plasticity and neuronal survival. Specifically, in cerebral ischemia, studies suggest UCP2 regulates ROS production, neuroinflammation, mitochondrial potential, energy balance, neuroendocrine function, and cell death. Another important function of UCP2 is controlling the temperature of the microenvironment at the presynaptic terminal. According to studies, UCP2 is crucial for neurons' bioenergetic adaptation to increasing neuronal activity and synaptic plasticity. As a result, data from various studies suggests that UCP2 is a plausible therapeutic target for treating neurological conditions.
1219:
1187:
from the inner to the outer mitochondrial membrane and the return transfer of protons from the outer to the inner mitochondrial membrane. They also reduce the mitochondrial membrane potential in mammalian cells. Tissue specificity occurs for the different UCPs and the exact methods of how UCPs transfer H+/OH- are not known. UCPs contain the three homologous protein domains of MACPs. This gene is widely expressed in many tissues with the greatest abundance in brain and testis. The gene product has an N-terminal hydrophobic domain that is not present in other UCPs. Two splice variants have been found for this gene.
1270:
oxidative stress. Reactive oxygen species and inducible nitric oxide synthase are produced primarily in mitochondria, which in
Alzheimer's disease causes the generation of reactive oxygen species and ultimately results in neuronal death (Kumar 2022). Glia maturation factors found in glial cells are linked with the down-regulation of UCPs 2 and 4. A pro-inflammatory protein known as Glia maturation factor has been found close to amyloid plaques and neurofibrillary tangles in Alzheimer's. It is linked to the expression of inducible nitric oxide synthase and NF-kB.
1278:
slow movement, balance impairment, and other disorders accompanied by
Parkinson's. This symptom occurs because of the loss of dopaminergic neurons during the elimination of dopamine neurotransmitters. Because UCP4 is a potential regulator of calcium homeostasis, blocking calcium channels that lower oxidative stress and stop the death of neuronal cells prevents calcium excretion in mitochondria. The leakage of protons and oxygen consumption increase due to increased UCP5 production, resulting in decreased mitochondrial potential and ATP synthesis.
255:
232:
129:
154:
506:
513:
4831:
261:
160:
1282:
causes cognitive impairment. UCP4 levels rise in response to environmental exposure in humans, shielding the brain from damage. Apopostsis contributes to cerebral ischemia and is necessary for calcium homeostasis, free radical release, the formation of reactive oxygen species (ROS), and energy metabolism. As further research is still being conducted, studies show UCP1 and UCP2 are associated with type 2 diabetes.
1236:
free radical levels in cells, and limit the level of ROS. UCP3 also reduces the risk of type 1 diabetes, indicating UCPs prevent mitochondrial-mediated neuronal injury (Kumar, 2022). The capacity to control elements affected by energy balance, such as 3-adrenoreceptor agonists, food intake, and exposure to cold, is shared by UCPs 1, 2, and 3. Lastly, cardiovascular disease is associated with UCP3.
1209:
1191:
however, they are all vital in the genome. Past studies demonstrated how decreasing redox signaling and specific UCPs have a neuroprotective role that can protect against a number of neurodegenerative diseases, including hypoxia, ischemia, and illnesses such as
Alzheimer's disease, Parkinson's disease, and schizophrenia.
1281:
Ageing, hypoxia (injured brain), and type 2 diabetes correspond with UCP 2 and 4. The aging brain is a risk factor for neurodegenerative diseases, and the overexpression of UCP2 can halt the aging process and stop the loss of neurons. Hypoxia occurs when there's a decrease in oxygen in tissues, which
1273:
Various regions of the brain in
Alzheimer's disease exhibit up-regulated GMF expression. Neuroinflammation was shown to be a contributing factor in neurodegenerative illnesses, and UCP2 was identified as the primary regulator of M1 and M2 plasticity toward the protective phenotype in brain disorders.
1235:
UCP3 is mainly expressed in adipose tissue, the lungs, and skeletal muscles; however, it is also found in the brain, kidney, spleen, and heart. The functions of this UCP are to regulate resting metabolic rate, regulate fatty acid metabolism, prevent diabetic neuropathy by preventing nerve loss, limit
1186:
Mitochondrial uncoupling proteins (UCP) are members of the larger family of mitochondrial anion carrier proteins (MACP). UCPs separate oxidative phosphorylation from ATP synthesis with energy dissipated as heat, also referred to as the mitochondrial proton leak. UCPs facilitate the transfer of anions
1260:
As aforementioned, the functions and distributions of the five isoforms of UCPs vary; some are located on the same chromosome in humans, rats, and mice. UCP1 is located on chromosomes 4, 19, and 8. UCP2 is found on chromosomes 11, 1, and 7. Further, UCP2 shares similarities with UCP 1, 3, 4, and 5.
1228:
UCP2 has different functions throughout the body, such as in the brain, lung, kidney, spleen, heart, and skeletal muscle. Additionally, several areas of the central nervous system have consistently high levels of UCP2 mRNA expression. Immediate neurons, invading or dormant monocytes, cells from the
1190:
Mitochondrial uncoupling proteins play a significant role in the human genome as well as in the genomes of plants, prokaryotes, fungi, and other eukaryotes, including all mammals. Humans contain five different isoforms of the uncoupling proteins, and each UCP has its own function in the human body;
1277:
Parkinson's disease typically affects adults over the age of 60; however, research indicates that brain injury in people between the ages of 18 and 30 can cause this condition. Over 90% of
Parkinson's cases are isolated, though less than 10% are genetic. Symptoms of Parkinson's consist of tremors,
1269:
Worldwide, neurodegenerative disorders pose a serious threat to public health. Along with oxidative stress, neuroinflammation, and an imbalance in energy homeostasis, mitochondrial dysfunction is a key contributor. One of the most primitive and crucial events in the pathogenesis of
Alzheimer's is
1199:
The discovery of UCP1 was found in some members of
Rodentia but mainly in brown adipose tissue found in infants and plays a role in energy homeostasis. The location of UCP1 is in the inner mitochondrial membrane. The body's brown adipose tissue prevents hypothermia by releasing the proton motive
1251:
UCP5 controls homeostasis by increasing ATP synthesis, mitochondrial polarization, and the prevention of apoptosis. It also maintains the potential of the mitochondrial membrane and lessens oxidative stress against 1-methyl-4-phenylpyridinium MPP+ and dopamine toxicity in SH-SY5Y cells. The
1247:
UCP4 maintains homeostasis by boosting mitochondrial complex II activity in SH-SY5Y neuroblastoma cells, enhancing fatty acid oxidation and insulin sensitivity, and decreasing mitochondrial membrane potential in astrocytes, thereby supporting neuronal survival. UCP4 is associated with
1634:
Ho PW, Chu AC, Kwok KH, Kung MH, Ramsden DB, Ho SL (November 2006). "Knockdown of uncoupling protein-5 in neuronal SH-SY5Y cells: Effects on MPP+-induced mitochondrial membrane depolarization, ATP deficiency, and oxidative cytotoxicity".
1248:
neurodegenerative diseases such as
Alzehmier's, Parkinson's, and schiperpheria, T2D, and induced neuronal death (Kumar, 2022). UCP4 is located in brain regions such as the hippocampus, substantial nigra, and striatum.
1200:
force from oxidative phosphorylation. UCP1 thus controls both the independent and thermogenic metabolisms. Diseases associated with UCP1 include type 2 diabetes and cardiometabolic disease.
1252:
expression of UCP5 is in neurons and astrocyte cells, and it is BMCP1, a mitochondrial brain carrier protein. UCP5 is associated with aging and the same neurodegenerative diseases as UCP4.
1672:
Yasuno K, Ando S, Misumi S, Makino S, Kulski JK, Muratake T, et al. (March 2007). "Synergistic association of mitochondrial uncoupling protein (UCP) genes with schizophrenia".
268:
167:
1396:"BMCP1, a novel mitochondrial carrier with high expression in the central nervous system of humans and rodents, and respiration uncoupling activity in recombinant yeast"
4872:
1744:
4765:
1274:
The increased production of reactive oxygen species in UCP 2 and 4 results in the development of
Alzheimer's because of the increased chance of apoptosis.
3124:
1712:
786:
767:
90:
4165:
1603:"UCP5/BMCP1 transcript isoforms in human skeletal muscle: relationship of the short-insert isoform with lipid oxidation and resting metabolic rates"
1533:"Characterization of novel UCP5/BMCP1 isoforms and differential regulation of UCP4 and UCP5 expression through dietary or temperature manipulation"
3030:
4560:
4086:
1376:
1358:
4891:
4418:
2286:
1955:
1722:
1218:
4865:
3428:
2922:
1848:
1843:
1768:
1737:
1110:
254:
4814:
4715:
3882:
2844:
2142:
2056:
1813:
1117:
231:
2646:
1438:
4901:
2907:
1983:
1828:
1345:
1324:
4755:
2382:
4896:
4858:
4735:
4730:
4701:
3242:
2806:
2608:
2603:
1730:
1341:
153:
128:
2801:
2796:
2791:
2776:
2771:
2766:
2761:
2551:
4127:
3929:
3729:
1320:
4725:
267:
166:
70:
2717:
3697:
3576:
1244:
The central nervous system is the primary site of expression for UCPs 4 and 5, and each UCP has a distinct function.
260:
159:
61:, solute carrier family 25 (mitochondrial carrier, brain), member 14, BMCP1, UCP5, solute carrier family 25 member 14
3280:
1568:"BMCP1: a mitochondrial uncoupling protein in neurons which regulates mitochondrial function and oxidant production"
3649:
2152:
1761:
4306:
3962:
2455:
4710:
2598:
4494:
4760:
2582:
2349:
831:
78:
4451:
2978:
4720:
4352:
2081:
812:
4696:
4532:
4218:
3403:
3328:
2722:
2593:
2588:
2162:
1764:
1291:
4793:
4788:
2755:
2157:
142:
57:
4385:
2091:
1866:
1093:
1089:
1085:
1081:
1077:
1073:
1069:
1065:
1061:
1057:
1053:
1049:
1045:
1041:
1027:
1023:
1019:
1015:
1000:
996:
992:
988:
962:
948:
944:
940:
936:
907:
903:
899:
895:
505:
2147:
1697:
1660:
1296:
102:
1031:
952:
921:
911:
512:
4288:
4283:
3631:
3626:
3553:
3548:
3543:
3538:
3533:
3528:
3508:
3503:
3498:
3493:
3478:
3468:
3458:
3453:
3443:
3418:
3224:
3209:
3204:
2826:
2821:
2816:
1689:
1652:
1622:
1589:
1554:
1519:
1484:
1417:
98:
50:
4842:
4542:
4509:
4476:
4466:
4433:
4428:
4362:
4243:
4195:
4185:
4142:
4106:
4101:
4068:
4063:
4058:
4053:
4044:
4039:
4034:
4006:
3996:
3987:
3982:
3977:
3812:
3797:
3792:
3777:
3744:
3711:
3621:
3581:
3338:
3310:
3295:
3290:
3285:
3262:
3257:
3105:
3101:
3092:
3050:
2874:
2864:
2854:
2786:
2732:
2666:
2651:
2485:
2480:
2475:
2326:
2227:
2222:
2192:
2116:
2111:
2106:
2033:
1394:
Sanchis D, Fleury C, Chomiki N, Goubern M, Huang Q, Neverova M, et al. (December 1998).
4838:
4830:
4588:
2689:
2427:
2417:
2402:
2364:
2359:
2177:
2101:
2028:
1753:
1681:
1644:
1614:
1579:
1544:
1509:
1474:
1466:
1407:
347:
278:
222:
177:
4672:
1757:
1439:"Entrez Gene: SLC25A14 solute carrier family 25 (mitochondrial carrier, brain), member 14"
322:
1479:
1458:
1618:
701:
696:
691:
686:
681:
676:
671:
666:
661:
656:
651:
646:
630:
625:
620:
615:
610:
605:
600:
584:
579:
574:
569:
564:
559:
554:
4885:
4688:
1716:
1584:
1567:
541:
1701:
1664:
82:
340:
119:
1531:
Yu XX, Mao W, Zhong A, Schow P, Brush J, Sherwood SW, et al. (August 2000).
106:
4311:
3767:
3363:
2564:
1470:
1381:
National Center for
Biotechnology Information, U.S. National Library of Medicine
1363:
National Center for Biotechnology Information, U.S. National Library of Medicine
1208:
423:
4747:
3905:
239:
136:
86:
1412:
1395:
4684:
731:
483:
361:
306:
293:
205:
192:
94:
1693:
1656:
1626:
1593:
1558:
1523:
1488:
1549:
1532:
1421:
1157:
4278:
4273:
4268:
4200:
3817:
3558:
3523:
3518:
3513:
3488:
3483:
3473:
3463:
3448:
3438:
3433:
3423:
3413:
3408:
3398:
3388:
3383:
3378:
3219:
3214:
3199:
3194:
3189:
3184:
3179:
3174:
2944:
2811:
2138:
1685:
1141:
876:
857:
1152:
17:
4645:
4640:
4635:
4630:
4625:
4620:
4570:
4565:
4537:
4514:
4504:
4499:
4471:
4461:
4456:
4423:
4367:
4357:
4263:
4258:
4253:
4248:
4238:
4233:
4228:
4223:
4190:
4180:
4175:
4170:
4147:
4137:
4132:
4109:
4096:
4091:
4025:
4020:
4011:
4001:
3972:
3967:
3944:
3939:
3934:
3911:
3887:
3864:
3807:
3802:
3787:
3782:
3772:
3749:
3739:
3734:
3706:
3701:
3679:
3674:
3669:
3664:
3659:
3654:
3616:
3611:
3606:
3601:
3596:
3591:
3586:
3373:
3368:
3358:
3353:
3348:
3343:
3333:
3305:
3300:
3252:
3247:
3169:
3164:
3159:
3154:
3149:
3144:
3139:
3134:
3129:
3087:
3078:
3069:
3064:
3055:
3045:
3040:
3035:
2989:
2984:
2960:
2955:
2950:
2889:
2884:
2879:
2869:
2859:
2849:
2781:
2737:
2727:
2699:
2694:
2671:
2661:
2656:
2628:
2623:
2618:
2613:
2561:
2556:
2512:
2507:
2502:
2497:
2490:
2470:
2465:
2460:
2437:
2432:
2331:
2321:
2316:
2242:
2237:
2232:
2217:
2212:
2207:
2202:
2197:
2038:
1936:
1931:
1926:
1921:
1916:
1674:
American Journal of Medical Genetics. Part B, Neuropsychiatric Genetics
1173:
843:
798:
1648:
1601:
Yang X, Pratley RE, Tokraks S, Tataranni PA, Permana PA (April 2002).
1514:
1497:
1459:"The uncoupling protein homologues: UCP1, UCP2, UCP3, StUCP and AtUCP"
4769:
3858:
3393:
2940:
2422:
2412:
2407:
2397:
2392:
2387:
2354:
2311:
2306:
2301:
2296:
2278:
2273:
2268:
2263:
2187:
2182:
2172:
2167:
2134:
2096:
2086:
2076:
2071:
2061:
2023:
2018:
2013:
2008:
2003:
1998:
1993:
1988:
1965:
1960:
1911:
1901:
1896:
1838:
1833:
1823:
1818:
1125:
753:
1602:
2917:
2912:
2066:
1906:
1891:
1886:
1881:
1876:
1871:
1498:"Specific sequence of motifs of mitochondrial uncoupling proteins"
1207:
716:
712:
4400:
4395:
4390:
2291:
1180:
74:
4670:
4609:
4334:
4166:
System A & N, sodium-coupled neutral amino-acid transporter
3840:
3012:
2533:
1795:
1780:
1726:
521:
1566:
Kim-Han JS, Reichert SA, Quick KL, Dugan LL (November 2001).
1814:
high affinity glutamate and neutral amino-acid transporter
2260:
cationic amino-acid transporter/glycoprotein-associated
330:
4846:
2285:
glycoprotein-associated/light or catalytic subunits of
495:
4419:
Na-independent, system-L like amino-acid transporter
4746:
4683:
4581:
4553:
4525:
4487:
4444:
4411:
4378:
4345:
4299:
4211:
4158:
4120:
4079:
3955:
3922:
3898:
3875:
3851:
3760:
3722:
3690:
3642:
3569:
3321:
3273:
3235:
3117:
3023:
2971:
2933:
2900:
2837:
2748:
2710:
2682:
2639:
2575:
2544:
2448:
2375:
2342:
2253:
2127:
2049:
1976:
1947:
1859:
1806:
1014:
981:
935:
894:
1337:
1335:
1333:
1316:
1314:
1312:
277:
176:
570:oxaloacetate transmembrane transporter activity
27:Protein-coding gene in the species Homo sapiens
1342:GRCm38: Ensembl release 89: ENSMUSG00000031105
565:thiosulfate transmembrane transporter activity
4866:
1738:
8:
580:succinate transmembrane transporter activity
3125:organic cation/anion/zwitterion transporter
1321:GRCh38: Ensembl release 89: ENSG00000102078
4873:
4859:
4680:
4667:
4606:
4342:
4331:
3848:
3837:
3020:
3009:
2647:human Na-sulfate/carboxylate cotransporter
2541:
2530:
1803:
1792:
1788:
1777:
1745:
1731:
1723:
1713:United States National Library of Medicine
1011:
932:
891:
727:
560:sulfate transmembrane transporter activity
537:
318:
217:
114:
1583:
1548:
1513:
1478:
1411:
575:malate transmembrane transporter activity
1711:This article incorporates text from the
1457:Ricquier D, Bouillaud F (January 2000).
1433:
1431:
1217:
697:oxaloacetate(2-) transmembrane transport
3243:Na+-dependent ascorbic acid transporter
1308:
450:paraventricular nucleus of hypothalamus
3031:Organic anion-transporting polypeptide
31:
4087:proton-coupled amino-acid transporter
2287:heterodimeric amino-acid transporters
1956:heterodimeric amino-acid transporters
1496:Jezek P, Urbánková E (January 2000).
1170:Brain mitochondrial carrier protein 1
682:phosphate ion transmembrane transport
626:integral component of plasma membrane
282:
243:
238:
181:
140:
135:
7:
4827:
4825:
2552:proton coupled metal ion transporter
4128:sugar-phosphate/phosphate exchanger
3730:facilitative nucleoside transporter
1400:The Journal of Biological Chemistry
4845:. You can help Knowledge (XXG) by
3930:type II Na-phosphate cotransporter
2143:sodium:neurotransmitter symporters
978:
867:
848:
822:
803:
777:
758:
555:transmembrane transporter activity
500:
418:
356:
335:
25:
3883:Vesicular glutamate transporter 1
2845:Vesicular glutamate transporter 1
2718:proton oligopeptide cotransporter
1607:Molecular Genetics and Metabolism
1176:that in humans is encoded by the
687:succinate transmembrane transport
4829:
1637:Journal of Neuroscience Research
1585:10.1046/j.1471-4159.2001.00604.x
511:
504:
266:
259:
253:
230:
165:
158:
152:
127:
3698:Na-coupled nucleoside transport
3577:multifunctional anion exchanger
2908:vesicular monoamine transporter
702:sulfate transmembrane transport
692:malate transmembrane transport
662:proton transmembrane transport
611:integral component of membrane
522:More reference expression data
484:More reference expression data
1:
4561:multidrug and toxin extrusion
3650:fatty acid transport proteins
1867:facilitative GLUT transporter
1619:10.1016/S1096-7192(02)00008-2
251:
150:
4307:basolateral iron transporter
3963:nucleoside-sugar transporter
2456:sodium bile salt cotransport
2057:sodium glucose cotransporter
1465:. 345 Pt 2 (Pt 2): 161–179.
631:mitochondrial inner membrane
4892:Genes on human chromosome X
1762:membrane transport proteins
4918:
4824:
4495:Putative sugar transporter
1265:Neurodegenerative diseases
4810:
4679:
4666:
4616:
4605:
4341:
4330:
3847:
3836:
3019:
3008:
2540:
2529:
1802:
1791:
1787:
1776:
1572:Journal of Neurochemistry
1471:10.1042/0264-6021:3450161
1377:"Mouse PubMed Reference:"
1359:"Human PubMed Reference:"
1156:
1151:
1147:
1140:
1124:
1111:Chr X: 130.34 – 130.37 Mb
1105:
1038:
985:
974:
959:
918:
887:
874:
870:
855:
851:
842:
829:
825:
810:
806:
797:
784:
780:
765:
761:
752:
737:
730:
726:
710:
540:
536:
519:
503:
494:
481:
430:
421:
404:epithelium of nasopharynx
368:
359:
329:
321:
317:
300:
287:
250:
229:
220:
216:
199:
186:
149:
126:
117:
113:
68:
65:
55:
48:
43:
39:
34:
4815:solute carrier disorders
4452:Choline-like transporter
2583:electroneutral cation-Cl
1413:10.1074/jbc.273.51.34611
4353:Magnesium transporter E
1984:bicarbonate transporter
1463:The Biochemical Journal
1118:Chr X: 47.71 – 47.75 Mb
657:transmembrane transport
652:mitochondrial transport
621:mitochondrial membranes
462:suprachiasmatic nucleus
4902:Membrane protein stubs
4841:–related article is a
4748:Antiporter (exchanger)
1225:
1215:
677:oxaloacetate transport
606:mitochondrial envelope
458:lateral septal nucleus
4897:Solute carrier family
4219:metal ion transporter
3329:mitochondrial carrier
2979:type III Na-phosphate
1550:10.1096/fj.14.11.1611
1292:Solute carrier family
1221:
1211:
672:thiosulfate transport
376:middle temporal gyrus
1686:10.1002/ajmg.b.30443
470:ventromedial nucleus
454:facial motor nucleus
284:X A5|X 25.69 cM
245:X chromosome (mouse)
143:X chromosome (human)
107:SLC25A14 - orthologs
4386:Ammonia transporter
3281:Na/(Ca-K) exchanger
1406:(51): 34611–34615.
647:aerobic respiration
585:antiporter activity
4533:Folate transporter
1954:heavy subunits of
1715:, which is in the
1297:Uncoupling protein
1226:
1216:
832:ENSMUSG00000031105
640:Biological process
594:Cellular component
548:Molecular function
442:olfactory tubercle
438:supraoptic nucleus
400:anterior pituitary
392:right uterine tube
4854:
4853:
4822:
4821:
4806:
4805:
4802:
4801:
4662:
4661:
4658:
4657:
4654:
4653:
4601:
4600:
4597:
4596:
4326:
4325:
4322:
4321:
3832:
3831:
3828:
3827:
3004:
3003:
3000:
2999:
2525:
2524:
2521:
2520:
1754:Membrane proteins
1649:10.1002/jnr.21034
1543:(11): 1611–1618.
1515:10.1080/713803586
1167:
1166:
1163:
1162:
1136:
1135:
1101:
1100:
1008:
1007:
970:
969:
929:
928:
883:
882:
864:
863:
838:
837:
819:
818:
793:
792:
774:
773:
722:
721:
667:sulfate transport
532:
531:
528:
527:
490:
489:
477:
476:
415:
414:
313:
312:
212:
211:
16:(Redirected from
4909:
4875:
4868:
4861:
4839:membrane protein
4833:
4826:
4781:
4780:
4779:
4681:
4668:
4607:
4589:Heme transporter
4343:
4332:
3849:
3838:
3021:
3010:
2690:urea transporter
2542:
2531:
1804:
1793:
1789:
1778:
1758:carrier proteins
1747:
1740:
1733:
1724:
1705:
1668:
1643:(6): 1358–1366.
1630:
1597:
1587:
1562:
1552:
1527:
1517:
1492:
1482:
1443:
1442:
1435:
1426:
1425:
1415:
1391:
1385:
1384:
1373:
1367:
1366:
1355:
1349:
1339:
1328:
1318:
1213:UCP1 in the cell
1149:
1148:
1120:
1113:
1096:
1012:
1003:
979:
975:RefSeq (protein)
965:
933:
924:
892:
868:
849:
823:
804:
778:
759:
728:
538:
524:
515:
508:
501:
486:
434:substantia nigra
426:
424:Top expressed in
419:
384:Brodmann area 23
380:endothelial cell
372:secondary oocyte
364:
362:Top expressed in
357:
336:
319:
309:
296:
285:
270:
263:
257:
246:
234:
218:
208:
195:
184:
169:
162:
156:
145:
131:
115:
109:
60:
53:
32:
21:
4917:
4916:
4912:
4911:
4910:
4908:
4907:
4906:
4882:
4881:
4880:
4879:
4823:
4818:
4798:
4778:
4775:
4774:
4773:
4771:
4742:
4705:
4675:
4650:
4612:
4593:
4577:
4549:
4521:
4483:
4440:
4407:
4374:
4337:
4318:
4295:
4207:
4154:
4116:
4075:
3951:
3918:
3894:
3871:
3843:
3824:
3756:
3718:
3686:
3638:
3565:
3317:
3269:
3231:
3113:
3015:
2996:
2967:
2929:
2896:
2833:
2756:monocarboxylate
2744:
2706:
2678:
2635:
2571:
2536:
2517:
2444:
2371:
2350:Na/Ca exchanger
2338:
2249:
2123:
2045:
1972:
1943:
1855:
1798:
1783:
1772:
1751:
1708:
1671:
1633:
1600:
1565:
1530:
1495:
1456:
1452:
1450:Further reading
1447:
1446:
1437:
1436:
1429:
1393:
1392:
1388:
1375:
1374:
1370:
1357:
1356:
1352:
1340:
1331:
1319:
1310:
1305:
1288:
1158:View/Edit Mouse
1153:View/Edit Human
1116:
1109:
1106:Location (UCSC)
1092:
1088:
1084:
1080:
1076:
1072:
1068:
1064:
1060:
1056:
1052:
1048:
1044:
1040:
1034:
1030:
1026:
1022:
1018:
999:
995:
991:
987:
961:
955:
951:
947:
943:
939:
920:
914:
910:
906:
902:
898:
813:ENSG00000102078
706:
635:
589:
520:
510:
509:
482:
473:
468:
466:arcuate nucleus
464:
460:
456:
452:
448:
446:dorsal striatum
444:
440:
436:
422:
411:
408:Brodmann area 9
406:
402:
398:
396:pituitary gland
394:
390:
386:
382:
378:
374:
360:
304:
291:
283:
273:
272:
271:
264:
244:
221:Gene location (
203:
190:
182:
172:
171:
170:
163:
141:
118:Gene location (
69:
56:
49:
28:
23:
22:
15:
12:
11:
5:
4915:
4913:
4905:
4904:
4899:
4894:
4884:
4883:
4878:
4877:
4870:
4863:
4855:
4852:
4851:
4834:
4820:
4819:
4811:
4808:
4807:
4804:
4803:
4800:
4799:
4797:
4796:
4791:
4786:
4785:
4784:
4776:
4758:
4752:
4750:
4744:
4743:
4741:
4740:
4739:
4738:
4733:
4723:
4718:
4713:
4708:
4703:
4699:
4693:
4691:
4677:
4676:
4671:
4664:
4663:
4660:
4659:
4656:
4655:
4652:
4651:
4649:
4648:
4643:
4638:
4633:
4628:
4623:
4617:
4614:
4613:
4610:
4603:
4602:
4599:
4598:
4595:
4594:
4592:
4591:
4585:
4583:
4579:
4578:
4576:
4575:
4574:
4573:
4568:
4557:
4555:
4551:
4550:
4548:
4547:
4546:
4545:
4540:
4529:
4527:
4523:
4522:
4520:
4519:
4518:
4517:
4512:
4507:
4502:
4491:
4489:
4485:
4484:
4482:
4481:
4480:
4479:
4474:
4469:
4464:
4459:
4448:
4446:
4442:
4441:
4439:
4438:
4437:
4436:
4431:
4426:
4415:
4413:
4409:
4408:
4406:
4405:
4404:
4403:
4398:
4393:
4382:
4380:
4376:
4375:
4373:
4372:
4371:
4370:
4365:
4360:
4349:
4347:
4339:
4338:
4335:
4328:
4327:
4324:
4323:
4320:
4319:
4317:
4316:
4315:
4314:
4303:
4301:
4297:
4296:
4294:
4293:
4292:
4291:
4286:
4281:
4276:
4271:
4266:
4261:
4256:
4251:
4246:
4241:
4236:
4231:
4226:
4215:
4213:
4209:
4208:
4206:
4205:
4204:
4203:
4198:
4193:
4188:
4183:
4178:
4173:
4162:
4160:
4156:
4155:
4153:
4152:
4151:
4150:
4145:
4140:
4135:
4124:
4122:
4118:
4117:
4115:
4114:
4113:
4112:
4104:
4099:
4094:
4083:
4081:
4077:
4076:
4074:
4073:
4072:
4071:
4066:
4061:
4056:
4049:
4048:
4047:
4042:
4037:
4030:
4029:
4028:
4023:
4016:
4015:
4014:
4009:
4004:
3999:
3992:
3991:
3990:
3985:
3980:
3975:
3970:
3959:
3957:
3953:
3952:
3950:
3949:
3948:
3947:
3942:
3937:
3926:
3924:
3920:
3919:
3917:
3916:
3915:
3914:
3902:
3900:
3896:
3895:
3893:
3892:
3891:
3890:
3879:
3877:
3873:
3872:
3870:
3869:
3868:
3867:
3855:
3853:
3845:
3844:
3841:
3834:
3833:
3830:
3829:
3826:
3825:
3823:
3822:
3821:
3820:
3815:
3810:
3805:
3800:
3795:
3790:
3785:
3780:
3775:
3764:
3762:
3758:
3757:
3755:
3754:
3753:
3752:
3747:
3742:
3737:
3726:
3724:
3720:
3719:
3717:
3716:
3715:
3714:
3709:
3694:
3692:
3688:
3687:
3685:
3684:
3683:
3682:
3677:
3672:
3667:
3662:
3657:
3646:
3644:
3640:
3639:
3637:
3636:
3635:
3634:
3629:
3624:
3619:
3614:
3609:
3604:
3599:
3594:
3589:
3584:
3573:
3571:
3567:
3566:
3564:
3563:
3562:
3561:
3556:
3551:
3546:
3541:
3536:
3531:
3526:
3521:
3516:
3511:
3506:
3501:
3496:
3491:
3486:
3481:
3476:
3471:
3466:
3461:
3456:
3451:
3446:
3441:
3436:
3431:
3426:
3421:
3416:
3411:
3406:
3401:
3396:
3391:
3386:
3381:
3376:
3371:
3366:
3361:
3356:
3351:
3346:
3341:
3336:
3325:
3323:
3319:
3318:
3316:
3315:
3314:
3313:
3308:
3303:
3298:
3293:
3288:
3277:
3275:
3271:
3270:
3268:
3267:
3266:
3265:
3260:
3255:
3250:
3239:
3237:
3233:
3232:
3230:
3229:
3228:
3227:
3222:
3217:
3212:
3207:
3202:
3197:
3192:
3187:
3182:
3177:
3172:
3167:
3162:
3157:
3152:
3147:
3142:
3137:
3132:
3121:
3119:
3115:
3114:
3112:
3111:
3110:
3109:
3097:
3096:
3095:
3090:
3083:
3082:
3081:
3074:
3073:
3072:
3067:
3060:
3059:
3058:
3053:
3048:
3043:
3038:
3027:
3025:
3017:
3016:
3013:
3006:
3005:
3002:
3001:
2998:
2997:
2995:
2994:
2993:
2992:
2987:
2981:cotransporter
2975:
2973:
2969:
2968:
2966:
2965:
2964:
2963:
2958:
2953:
2937:
2935:
2931:
2930:
2928:
2927:
2926:
2925:
2920:
2915:
2904:
2902:
2898:
2897:
2895:
2894:
2893:
2892:
2887:
2882:
2877:
2872:
2867:
2862:
2857:
2852:
2841:
2839:
2835:
2834:
2832:
2831:
2830:
2829:
2824:
2819:
2814:
2809:
2804:
2799:
2794:
2789:
2784:
2779:
2774:
2769:
2764:
2752:
2750:
2746:
2745:
2743:
2742:
2741:
2740:
2735:
2730:
2725:
2714:
2712:
2708:
2707:
2705:
2704:
2703:
2702:
2697:
2686:
2684:
2680:
2679:
2677:
2676:
2675:
2674:
2669:
2664:
2659:
2654:
2643:
2641:
2637:
2636:
2634:
2633:
2632:
2631:
2626:
2621:
2616:
2611:
2606:
2601:
2596:
2591:
2585:cotransporter
2579:
2577:
2573:
2572:
2570:
2569:
2568:
2567:
2559:
2548:
2546:
2538:
2537:
2534:
2527:
2526:
2523:
2522:
2519:
2518:
2516:
2515:
2510:
2505:
2500:
2495:
2494:
2493:
2488:
2483:
2478:
2473:
2468:
2463:
2452:
2450:
2446:
2445:
2443:
2442:
2441:
2440:
2435:
2430:
2425:
2420:
2415:
2410:
2405:
2400:
2395:
2390:
2383:Na/H exchanger
2379:
2377:
2373:
2372:
2370:
2369:
2368:
2367:
2362:
2357:
2346:
2344:
2340:
2339:
2337:
2336:
2335:
2334:
2329:
2324:
2319:
2314:
2309:
2304:
2299:
2294:
2283:
2282:
2281:
2276:
2271:
2266:
2257:
2255:
2251:
2250:
2248:
2247:
2246:
2245:
2240:
2235:
2230:
2225:
2220:
2215:
2210:
2205:
2200:
2195:
2190:
2185:
2180:
2175:
2170:
2165:
2160:
2155:
2150:
2131:
2129:
2125:
2124:
2122:
2121:
2120:
2119:
2114:
2109:
2104:
2099:
2094:
2089:
2084:
2079:
2074:
2069:
2064:
2053:
2051:
2047:
2046:
2044:
2043:
2042:
2041:
2036:
2031:
2026:
2021:
2016:
2011:
2006:
2001:
1996:
1991:
1980:
1978:
1974:
1973:
1971:
1970:
1969:
1968:
1963:
1951:
1949:
1945:
1944:
1942:
1941:
1940:
1939:
1934:
1929:
1924:
1919:
1914:
1909:
1904:
1899:
1894:
1889:
1884:
1879:
1874:
1863:
1861:
1857:
1856:
1854:
1853:
1852:
1851:
1846:
1841:
1836:
1831:
1826:
1821:
1810:
1808:
1800:
1799:
1796:
1785:
1784:
1781:
1774:
1773:
1765:solute carrier
1752:
1750:
1749:
1742:
1735:
1727:
1707:
1706:
1680:(2): 250–253.
1669:
1631:
1613:(4): 369–373.
1598:
1578:(3): 658–668.
1563:
1528:
1493:
1453:
1451:
1448:
1445:
1444:
1427:
1386:
1368:
1350:
1329:
1307:
1306:
1304:
1301:
1300:
1299:
1294:
1287:
1284:
1165:
1164:
1161:
1160:
1155:
1145:
1144:
1138:
1137:
1134:
1133:
1131:
1129:
1122:
1121:
1114:
1107:
1103:
1102:
1099:
1098:
1036:
1035:
1009:
1006:
1005:
983:
982:
976:
972:
971:
968:
967:
957:
956:
930:
927:
926:
916:
915:
889:
885:
884:
881:
880:
872:
871:
865:
862:
861:
853:
852:
846:
840:
839:
836:
835:
827:
826:
820:
817:
816:
808:
807:
801:
795:
794:
791:
790:
782:
781:
775:
772:
771:
763:
762:
756:
750:
749:
744:
739:
735:
734:
724:
723:
720:
719:
708:
707:
705:
704:
699:
694:
689:
684:
679:
674:
669:
664:
659:
654:
649:
643:
641:
637:
636:
634:
633:
628:
623:
618:
613:
608:
603:
597:
595:
591:
590:
588:
587:
582:
577:
572:
567:
562:
557:
551:
549:
545:
544:
534:
533:
530:
529:
526:
525:
517:
516:
498:
492:
491:
488:
487:
479:
478:
475:
474:
472:
471:
467:
463:
459:
455:
451:
447:
443:
439:
435:
431:
428:
427:
416:
413:
412:
410:
409:
405:
401:
397:
393:
389:
385:
381:
377:
373:
369:
366:
365:
353:
352:
344:
333:
327:
326:
323:RNA expression
315:
314:
311:
310:
302:
298:
297:
289:
286:
281:
275:
274:
265:
258:
252:
248:
247:
242:
236:
235:
227:
226:
214:
213:
210:
209:
201:
197:
196:
188:
185:
180:
174:
173:
164:
157:
151:
147:
146:
139:
133:
132:
124:
123:
111:
110:
67:
63:
62:
54:
46:
45:
41:
40:
37:
36:
26:
24:
14:
13:
10:
9:
6:
4:
3:
2:
4914:
4903:
4900:
4898:
4895:
4893:
4890:
4889:
4887:
4876:
4871:
4869:
4864:
4862:
4857:
4856:
4850:
4848:
4844:
4840:
4835:
4832:
4828:
4817:
4816:
4809:
4795:
4792:
4790:
4787:
4783:
4767:
4764:
4763:
4762:
4759:
4757:
4754:
4753:
4751:
4749:
4745:
4737:
4734:
4732:
4729:
4728:
4727:
4724:
4722:
4719:
4717:
4714:
4712:
4709:
4707:
4700:
4698:
4695:
4694:
4692:
4690:
4689:Cotransporter
4686:
4682:
4678:
4674:
4669:
4665:
4647:
4644:
4642:
4639:
4637:
4634:
4632:
4629:
4627:
4624:
4622:
4619:
4618:
4615:
4608:
4604:
4590:
4587:
4586:
4584:
4580:
4572:
4569:
4567:
4564:
4563:
4562:
4559:
4558:
4556:
4552:
4544:
4541:
4539:
4536:
4535:
4534:
4531:
4530:
4528:
4524:
4516:
4513:
4511:
4508:
4506:
4503:
4501:
4498:
4497:
4496:
4493:
4492:
4490:
4486:
4478:
4475:
4473:
4470:
4468:
4465:
4463:
4460:
4458:
4455:
4454:
4453:
4450:
4449:
4447:
4443:
4435:
4432:
4430:
4427:
4425:
4422:
4421:
4420:
4417:
4416:
4414:
4410:
4402:
4399:
4397:
4394:
4392:
4389:
4388:
4387:
4384:
4383:
4381:
4377:
4369:
4366:
4364:
4361:
4359:
4356:
4355:
4354:
4351:
4350:
4348:
4344:
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1717:public domain
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1537:FASEB Journal
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938:
934:
931:
925:
923:
917:
913:
909:
905:
901:
897:
893:
890:
888:RefSeq (mRNA)
886:
879:
878:
873:
869:
866:
860:
859:
854:
850:
847:
845:
841:
834:
833:
828:
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815:
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800:
796:
789:
788:
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748:
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743:
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736:
733:
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703:
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695:
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673:
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663:
660:
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655:
653:
650:
648:
645:
644:
642:
639:
638:
632:
629:
627:
624:
622:
619:
617:
616:mitochondrion
614:
612:
609:
607:
604:
602:
599:
598:
596:
593:
592:
586:
583:
581:
578:
576:
573:
571:
568:
566:
563:
561:
558:
556:
553:
552:
550:
547:
546:
543:
542:Gene ontology
539:
535:
523:
518:
514:
507:
502:
499:
497:
493:
485:
480:
469:
465:
461:
457:
453:
449:
445:
441:
437:
433:
432:
429:
425:
420:
417:
407:
403:
399:
395:
391:
387:
383:
379:
375:
371:
370:
367:
363:
358:
355:
354:
351:
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345:
343:
342:
338:
337:
334:
332:
328:
324:
320:
316:
308:
303:
299:
295:
290:
280:
276:
269:
262:
256:
249:
241:
237:
233:
228:
224:
219:
215:
207:
202:
198:
194:
189:
179:
175:
168:
161:
155:
148:
144:
138:
134:
130:
125:
121:
116:
112:
108:
104:
100:
96:
92:
88:
84:
80:
76:
72:
64:
59:
52:
47:
42:
38:
33:
30:
19:
4847:expanding it
4836:
4812:
3908:transporter
3861:transporter
2947:transporter
2758:transporter
2141:- dependent
1710:
1709:
1677:
1673:
1640:
1636:
1610:
1606:
1575:
1571:
1540:
1536:
1508:(1): 63–70.
1505:
1501:
1462:
1403:
1399:
1389:
1380:
1371:
1362:
1353:
1280:
1276:
1272:
1268:
1264:
1263:
1259:
1255:
1254:
1250:
1246:
1243:
1239:
1238:
1234:
1230:
1227:
1222:
1212:
1203:
1202:
1198:
1194:
1193:
1189:
1185:
1177:
1169:
1168:
1094:NP_001390194
1090:NP_001390193
1086:NP_001390192
1082:NP_001390191
1078:NP_001390190
1074:NP_001390189
1070:NP_001390188
1066:NP_001390187
1062:NP_001390185
1058:NP_001390183
1054:NP_001390181
1050:NP_001390180
1046:NP_001390179
1042:NP_001346065
1039:
1028:NP_001277634
1024:NP_001277633
1020:NP_001277632
1016:NP_001159922
1001:NP_001269127
997:NP_001269126
993:NP_001269125
989:NP_001269124
986:
963:NM_001359136
960:
949:NM_001290705
945:NM_001290704
941:NM_001290703
937:NM_001166450
919:
908:NM_001282198
904:NM_001282197
900:NM_001282196
896:NM_001282195
875:
856:
830:
811:
785:
766:
746:
741:
346:
339:
204:130,373,361
191:130,339,888
66:External IDs
29:
3768:zinc efflux
1240:UCP 4 and 5
305:47,751,171
292:47,712,290
44:Identifiers
4886:Categories
4794:Cl-oxalate
4789:Cl-formate
4716:Na/glucose
3906:Acetyl-CoA
1502:IUBMB Life
1348:, May 2017
1327:, May 2017
1303:References
350:(ortholog)
87:HomoloGene
4813:see also
4685:Symporter
4673:Ion pumps
1256:Structure
1032:NP_035528
953:NM_011398
922:NM_022810
912:NM_003951
732:Orthologs
95:GeneCards
4782:(Band 3)
4766:Na/(Ca-K
4336:SLC41–48
4289:SLC39A14
4284:SLC39A13
4279:SLC39A12
4274:SLC39A11
4269:SLC39A10
4201:SLC38A10
3842:SLC31–40
3818:SLC30A10
3632:SLC26A11
3627:SLC26A10
3559:SLC25A46
3554:SLC25A45
3549:SLC25A44
3544:SLC25A43
3539:SLC25A42
3534:SLC25A41
3529:SLC25A40
3524:SLC25A39
3519:SLC25A38
3514:SLC25A37
3509:SLC25A36
3504:SLC25A35
3499:SLC25A34
3494:SLC25A33
3489:SLC25A32
3484:SLC25A31
3479:SLC25A30
3474:SLC25A29
3469:SLC25A28
3464:SLC25A27
3459:SLC25A26
3454:SLC25A25
3449:SLC25A24
3444:SLC25A23
3439:SLC25A22
3434:SLC25A21
3429:SLC25A20
3424:SLC25A19
3419:SLC25A18
3414:SLC25A17
3409:SLC25A16
3404:SLC25A15
3399:SLC25A14
3394:SLC25A13
3389:SLC25A12
3384:SLC25A11
3379:SLC25A10
3225:SLC22A20
3220:SLC22A19
3215:SLC22A18
3210:SLC22A17
3205:SLC22A16
3200:SLC22A15
3195:SLC22A14
3190:SLC22A13
3185:SLC22A12
3180:SLC22A11
3175:SLC22A10
3014:SLC21–30
2945:thiamine
2827:SLC16A14
2822:SLC16A13
2817:SLC16A12
2812:SLC16A11
2807:SLC16A10
2535:SLC11–20
2139:chloride
1782:By group
1702:30129988
1694:17066476
1665:24763520
1657:16941493
1627:12051969
1594:11701769
1559:10928996
1524:10772343
1489:10620491
1344:–
1323:–
1286:See also
1178:SLC25A14
1142:Wikidata
711:Sources:
601:membrane
99:SLC25A14
58:SLC25A14
35:SLC25A14
18:SLC25A14
4697:Na/K,Cl
4611:SLCO1–4
4571:SLC47A2
4566:SLC47A1
4543:SLC46A2
4538:SLC46A1
4515:SLC45A4
4510:SLC54A3
4505:SLC45A2
4500:SLC45A1
4477:SLC44A5
4472:SLC44A4
4467:SLC44A3
4462:SLC44A2
4457:SLC44A1
4434:SLC43A3
4429:SLC43A2
4424:SLC43A1
4368:SLC41A3
4363:SLC41A2
4358:SLC41A1
4312:SLC40A1
4264:SLC39A9
4259:SLC39A8
4254:SLC39A7
4249:SLC39A6
4244:SLC39A5
4239:SLC39A4
4234:SLC39A3
4229:SLC39A2
4224:SLC39A1
4196:SLC38A6
4191:SLC38A5
4186:SLC38A4
4181:SLC38A3
4176:SLC38A2
4171:SLC38A1
4148:SLC37A4
4143:SLC37A3
4138:SLC37A2
4133:SLC37A1
4107:SLC36A4
4102:SLC36A3
4097:SLC36A2
4092:SLC36A1
4069:SLC35E4
4064:SLC35E3
4059:SLC35E2
4054:SLC35E1
4045:SLC35D3
4040:SLC35D2
4035:SLC35D1
4026:SLC35C2
4021:SLC35C1
4012:SLC35B4
4007:SLC35B3
4002:SLC35B2
3997:SLC35B1
3988:SLC35A5
3983:SLC35A4
3978:SLC35A3
3973:SLC35A2
3968:SLC35A1
3945:SLC34A3
3940:SLC34A2
3935:SLC34A1
3912:SLC33A1
3888:SLC32A1
3865:SLC31A1
3813:SLC30A9
3808:SLC30A8
3803:SLC30A7
3798:SLC30A6
3793:SLC30A5
3788:SLC30A4
3783:SLC30A3
3778:SLC30A2
3773:SLC30A1
3750:SLC29A4
3745:SLC29A3
3740:SLC29A2
3735:SLC29A1
3712:SLC28A3
3707:SLC28A2
3702:SLC28A1
3680:SLC27A6
3675:SLC27A5
3670:SLC27A4
3665:SLC27A3
3660:SLC27A2
3655:SLC27A1
3622:SLC26A9
3617:SLC26A8
3612:SLC26A7
3607:SLC26A6
3602:SLC26A5
3597:SLC26A4
3592:SLC26A3
3587:SLC26A2
3582:SLC26A1
3374:SLC25A9
3369:SLC25A8
3364:SLC25A7
3359:SLC25A6
3354:SLC25A5
3349:SLC25A4
3344:SLC25A3
3339:SLC25A2
3334:SLC25A1
3311:SLC24A6
3306:SLC24A5
3301:SLC24A4
3296:SLC24A3
3291:SLC24A2
3286:SLC24A1
3263:SLC23A4
3258:SLC23A3
3253:SLC23A2
3248:SLC23A1
3170:SLC22A9
3165:SLC22A8
3160:SLC22A7
3155:SLC22A6
3150:SLC22A5
3145:SLC22A4
3140:SLC22A3
3135:SLC22A2
3130:SLC22A1
3106:SLCO6A1
3102:SLCO5A1
3093:SLCO4C1
3088:SLCO4A1
3079:SLCO3A1
3070:SLCO2B1
3065:SLCO2A1
3056:SLCO1C1
3051:SLCO1B4
3046:SLCO1B3
3041:SLCO1B1
3036:SLCO1A2
2990:SLC20A2
2985:SLC20A1
2961:SLC19A3
2956:SLC19A2
2951:SLC19A1
2923:SLC18A3
2918:SLC18A2
2913:SLC18A1
2890:SLC17A9
2885:SLC17A8
2880:SLC17A7
2875:SLC17A6
2870:SLC17A5
2865:SLC17A4
2860:SLC17A3
2855:SLC17A2
2850:SLC17A1
2802:SLC16A9
2797:SLC16A8
2792:SLC16A7
2787:SLC16A6
2782:SLC16A5
2777:SLC16A4
2772:SLC16A3
2767:SLC16A2
2762:SLC16A1
2738:SLC15A4
2733:SLC15A3
2728:SLC15A2
2723:SLC15A1
2700:SLC14A2
2695:SLC14A1
2672:SLC13A5
2667:SLC13A4
2662:SLC13A3
2657:SLC13A2
2652:SLC13A1
2629:SLC12A9
2624:SLC12A8
2619:SLC12A7
2614:SLC12A6
2609:SLC12A5
2604:SLC12A4
2599:SLC12A3
2594:SLC12A2
2589:SLC12A1
2562:SLC11A2
2557:SLC11A1
2491:SLC10A7
2486:SLC10A6
2481:SLC10A5
2476:SLC10A4
2471:SLC10A3
2466:SLC10A2
2461:SLC10A1
2438:SLC9A11
2433:SLC9A10
2332:SLC7A14
2327:SLC7A13
2322:SLC7A11
2317:SLC7A10
2243:SLC6A20
2238:SLC6A19
2233:SLC6A18
2228:SLC6A17
2223:SLC6A16
2218:SLC6A15
2213:SLC6A14
2208:SLC6A13
2203:SLC6A12
2198:SLC6A11
2193:SLC6A10
1797:SLC1–10
1480:1220743
1422:9852133
1346:Ensembl
1325:Ensembl
1174:protein
844:UniProt
799:Ensembl
738:Species
717:QuickGO
325:pattern
83:1330823
51:Aliases
3859:copper
2941:folate
2428:SLC9A9
2423:SLC9A8
2418:SLC9A7
2413:SLC9A6
2408:SLC9A5
2403:SLC9A4
2398:SLC9A3
2393:SLC9A2
2388:SLC9A1
2365:SLC8A3
2360:SLC8A2
2355:SLC8A1
2312:SLC7A9
2307:SLC7A8
2302:SLC7A7
2297:SLC7A6
2292:SLC7A5
2279:SLC7A4
2274:SLC7A3
2269:SLC7A2
2264:SLC7A1
2188:SLC6A9
2183:SLC6A8
2178:SLC6A7
2173:SLC6A6
2168:SLC6A5
2163:SLC6A4
2158:SLC6A3
2153:SLC6A2
2148:SLC6A1
2137:- and
2135:sodium
2062:SLC5A1
1989:SLC4A1
1961:SLC3A1
1872:SLC2A1
1819:SLC1A1
1700:
1692:
1663:
1655:
1625:
1592:
1557:
1522:
1487:
1477:
1420:
1128:search
1126:PubMed
877:Q9Z2B2
858:O95258
754:Entrez
496:BioGPS
183:Xq26.1
75:300242
4837:This
4761:Na/Ca
4711:Na/Cl
4582:(48):
4554:(47):
4526:(46):
4488:(45):
4445:(44):
4412:(43):
4379:(42):
4346:(41):
4300:(40):
4212:(39):
4159:(38):
4121:(37):
4080:(36):
3956:(35):
3923:(34):
3899:(33):
3876:(32):
3852:(31):
3761:(30):
3723:(29):
3691:(28):
3643:(27):
3570:(26):
3322:(25):
3274:(24):
3236:(23):
3118:(22):
3024:(21):
2972:(20):
2934:(19):
2901:(18):
2838:(17):
2749:(16):
2711:(15):
2683:(14):
2640:(13):
2576:(12):
2545:(11):
2449:(10):
1769:TC 2A
1698:S2CID
1661:S2CID
1204:UCP 2
1172:is a
787:20523
747:Mouse
742:Human
713:Amigo
388:sperm
348:Mouse
341:Human
288:Start
223:Mouse
187:Start
120:Human
4843:stub
4768:) -
4756:Na/H
4726:Cl/K
4721:Na/I
4702:Na/P
4646:O4A1
4641:O431
4636:O2B1
4631:O1B3
4626:O1B1
4621:O1A2
4401:RhCG
4396:RhBG
4391:RhAG
4110:36A2
2565:11A3
2513:10A7
2508:10A3
2503:10A2
2498:10A1
2376:(9):
2343:(8):
2254:(7):
2128:(6):
2050:(5):
1977:(4):
1948:(3):
1860:(2):
1807:(1):
1690:PMID
1678:144B
1653:PMID
1623:PMID
1590:PMID
1555:PMID
1520:PMID
1485:PMID
1418:PMID
1231:UCP3
1223:UCP2
1195:UCP1
1181:gene
768:9016
331:Bgee
279:Band
240:Chr.
178:Band
137:Chr.
91:2937
71:OMIM
4772:HCO
4770:Cl/
1682:doi
1645:doi
1615:doi
1580:doi
1545:doi
1510:doi
1475:PMC
1467:doi
1408:doi
1404:273
301:End
200:End
103:OMA
79:MGI
4888::
4687:,
2117:12
2112:11
2107:10
2039:11
2034:10
1937:14
1932:13
1927:12
1922:11
1917:10
1760::
1756:,
1696:.
1688:.
1676:.
1659:.
1651:.
1641:84
1639:.
1621:.
1611:75
1609:.
1605:.
1588:.
1576:79
1574:.
1570:.
1553:.
1541:14
1539:.
1535:.
1518:.
1506:49
1504:.
1500:.
1483:.
1473:.
1461:.
1430:^
1416:.
1402:.
1398:.
1379:.
1361:.
1332:^
1311:^
1183:.
715:/
307:bp
294:bp
206:bp
193:bp
101:;
97::
93:;
89::
85:;
81::
77:;
73::
4874:e
4867:t
4860:v
4849:.
4777:3
4736:5
4731:4
4706:3
4704:i
3700:(
3108:)
3104:(
2943:/
2102:9
2097:8
2092:7
2087:6
2082:5
2077:4
2072:3
2067:2
2029:9
2024:8
2019:7
2014:6
2009:5
2004:4
1999:3
1994:2
1966:2
1912:9
1907:8
1902:7
1897:6
1892:5
1887:4
1882:3
1877:2
1849:7
1844:6
1839:5
1834:4
1829:3
1824:2
1771:)
1767:(
1746:e
1739:t
1732:v
1719:.
1704:.
1684::
1667:.
1647::
1629:.
1617::
1596:.
1582::
1561:.
1547::
1526:.
1512::
1491:.
1469::
1441:.
1424:.
1410::
1383:.
1365:.
225:)
122:)
105::
20:)
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