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2018, his laboratory showed that pyrophosphate hydrolysis is an intrinsic and critical step in the DNA synthesis reaction catalyzed by DNA polymerases and this discovery was accorded breakthrough status by the journal
Nucleic Acids Chemistry (NAR, 2018, 46:5875). Regarding the piggyBac transposase, his laboratory has shown that the dimerization through the Ring Finger Domain present at the C-terminus attenuates the excision activity of this enzyme (Biochemistry, 2018, 57:2913). He has discovered the mechanism employed by DNA polymerase IV to rescue replication stalled at damaged nucleotides with unprecedented efficiency and accuracy (Structure, 2014, 23:56β67). Nair has provided insight into how specialized DNA polymerases that participate in adaptive mutagenesis ensure achieve function (Nucleic Acids Research, 2013, 41:5104β5014; Acta Crystallogr D Biol Crystallogr. 2012 68:960-7, J Nucleic Acids. 2012:285481). His laboratory has shown how GTP binding to the viral RNA-dependent-RNA polymerase ensures accurate initiation of replication of the viral genome (Nucleic Acids Research, 2014, 42:2758β2573). In addition, he has shown that reactive oxygen species do play an important role in the antimicrobial activity of bactericidal antibiotics (Angew Chem Int Ed Engl. 2016 55:2397-400). In collaboration with D. N. Rao (Department of Biochemistry, IISc), his laboratory has also contributed towards understanding how proteins involved in the post-replicative repair of DNA mismatches function (Nucleic Acids Research, 2018, 46:256β266; PLoS One. 2010, 5:e13726). His laboratory has shown that the proofreading domain of the Pfprex DNA polymerase from Plasmodium falciparum is capable of removing misincorporated oxidized nucleotides from the primer (Sci Rep. 2020,10(1):11157) and translesion DNA synthesis past common oxidized template nucleotides (FEBS J., 2022 289:5218). Recently his laboratory has helped in the characterization of a monoclonal antibody that can neutralize different Variants-of-Concern of the SARS-CoV-2 virus (PLoS Pathog., 2022,18(12):e1010994). Using computational tools his laboratory has also identified possible inhibitors of the RNA-dependent-RNA polymerase (IUBMB Life., 2020, 72:2112) and proofreading exoribonuclease from SARS-CoV-2 (Int J Biol Macromol.,2021,168:272). His laboratory also provided the structure of P4A2, a broadly neutralizing anti-SARS-CoV-2 mAb, in complex with the Receptor-Binding-Domain of the Spike protein (Plos Path. 2022,e1010994) So far, he has been centrally involved in the deposition of 76 entries in the protein data bank, which is a repository of three-dimensional structures of biological macromolecules.
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may also prove carcinogenic. Eukaryotes possess up to four specialized DNA polymerases that are able to synthesize DNA across these lesions and thus prevent the replication fork from stalling. Nair determined the crystal structure of the catalytic cores of two such polymerases, human DNA polymerase iota (hPolΞΉ) and yeast REV1 (yREV1) βin complex with DNA and incoming nucleotide. The structures of hPolΞΉ and yRev1 in complex with undamaged and damaged DNA has shown that these two polymerases prefer altered modes of base-pairing in the active site to facilitate lesion bypass (Nature, 2004, 430:377; Science, 2005, 309:2219; Structure, 2005, 13:1569; Structure, 2006, 14:749; Nat. Struct. Mol. Biol., 2006, 13:619; Structure, 2008, 16:239; Structure, 2009, 17:530). Both hPolΞΉ and yREV1 have unique active sites that facilitate the formation of non-Watson-Crick base pairs to achieve lesion bypass and rescue stalled replication. He also played a role in the determination of the structure of a third Y-family polymerase human DNA Polymerase kappa in its functional state (Mol. Cell, 2007, 25:601). In addition, he also participated in projects aimed at understanding the nature of interactions between the translational regulator
Pumilio and non-cognate RNA targets (Structure, 2008, 16:549) and discerning the preference of hPolΞΉ for incorporating dGTP when the base of the templating nucleotide is thymine (Structure, 2009, 17:974).
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the antibodies in their bound and unbound state suggests there could be a convergence of both epitope and paratope conformations in an antibody response against a flexible immunodominant epitope (J. Immunol, 2002, 168:2371). He also carried out a computational analysis of the conformational propensities of native and retro-inverso versions of B-cell and T-cell epitopes (J. Immunol, 2003, 170:1362). This study showed that conformational and functional mimicry can be achieved through retro-inversion only if the native peptide is present in a linear extended conformation in its functional state. He was also involved in the structure determination of an antibacterial protein from tasar silkworm
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Sharma A, Nair DT. Cloning, expression, purification, crystallization and preliminary crystallographic analysis of MsDpo4: a Y-family DNA polymerase from
Mycobacterium smegmatis. Acta Crystallogr Sect F Struct Biol Cryst Commun. 2011 Jul 1;67(Pt 7):812-6. doi: 10.1107/S1744309111019063. Epub 2011 Jun
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Weinert T, Olieric V, Waltersperger S, Panepucci E, Chen L, Zhang H, Zhou D, Rose J, Ebihara A, Kuramitsu S, Li D, Howe N, Schnapp G, Pautsch A, Bargsten K, Prota AE, Surana P, Kottur J, Nair DT, Basilico F, Cecatiello V, Pasqualato S, Boland A, Weichenrieder O, Wang BC, Steinmetz MO, Caffrey M, Wang
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Deepak Nair has obtained new insight regarding the molecular mechanisms that determine the fidelity of the replication process in bacteria and flaviviruses. His laboratory has shed new light on the strategy utilized by DNA polymerases to prevent ribonucleotide incorporation (NAR, 2019, 47:10693). In
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At RCB, Deepak T. Nair has participated in the development and management of national resources for Indian
Science. He is the primary coordinator of ESRF access program of RCB, funded by the DBT, that enables Indian researchers to access the structural biology resources at the European Synchrotron
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His doctoral thesis (July 1996 β Dec 2001) describes the crystallographic analysis of a panel of three murine monoclonal antibodies raised against the same promiscuous peptide antigen PS1 (HQLDPAFGANSTNPD). (J Immunol, 2000, 165:6949; J. Immunol, 2002, 168:2371). The comparison of the structure of
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As a post-doctoral fellow (Dec 2001β July 2007) he focused on understanding the structural basis of DNA lesion bypass by eukaryotic Y-family DNA polymerases using X-ray crystallography. Due to the action of a variety of agents, lesions are formed on DNA which interferes with normal replication and
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and he was born in Pune in the western state of
Maharashtra on 25 October 1973, Deepak Nair went to school at the Jai Hind High School (Pimpri) and then later to the St. Vincents Junior College (Pune). He graduated with BSc in Chemistry from Fergusson College (1994) and completed his master's in
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Kottur J, Sharma A, Gore KR, Narayanan N, Samanta B, Pradeepkumar PI, Nair DT. Unique structural features in DNA polymerase IV enable efficient bypass of the N2 adduct induced by the nitrofurazone antibiotic. Structure. 2015 Jan 6;23(1):56β67. doi: 10.1016/j.str.2014.10.019. Epub 2014 Dec 11.
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Nair DT, Kaur KJ, Singh K, Mukherjee P, Rajagopal D, George A, Bal V, Rath S, Rao KV, Salunke DM. Mimicry of native peptide antigens by the corresponding retro-inverso analogs is dependent on their intrinsic structure and interaction propensities. J Immunol. 2003 Feb 1;170(3):1362β73.
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Surana P, Satchidanandam V, Nair DT. RNA-dependent RNA polymerase of
Japanese encephalitis virus binds the initiator nucleotide GTP to form a mechanistically important pre-initiation state. Nucleic Acids Res. 2014 Feb;42(4):2758-73. doi: 10.1093/nar/gkt1106. Epub 2013 Nov 28.
331:). He is centrally involved in the management of the Advanced Technology Platform Centre, that provides paid services at the Electron Microscopy, Genomics, Molecular Interactions, Optical Microscopy and Protein Expression facilities to researchers from all over India (
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Deepak T. Nair is course coordinator and instructor for the
Molecular Biology & Genetic Engineering (RCB303) and Methods in Molecular Biology (RCB306) courses at the Regional Centre for Biotechnology. He is part of the Academic Management Committee at RCB.
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Jain D, Nair DT, Swaminathan GJ, Abraham EG, Nagaraju J, Salunke DM. Structure of the induced antibacterial protein from tasar silkworm, Antheraea mylitta. Implications to molecular evolution. J Biol Chem. 2001 Nov 2;276(44):41377-82. Epub 2001 Aug 24.
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Sharma A, Kottur J, Narayanan N, Nair DT. A strategically located serine residue is critical for the mutator activity of DNA polymerase IV from
Escherichia coli. Nucleic Acids Res. 2013 May;41(9):5104-14. doi: 10.1093/nar/gkt146. Epub 2013 Mar 21.
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Namadurai S, Jain D, Kulkarni DS, Tabib CR, Friedhoff P, Rao DN, Nair DT. The C-terminal domain of the MutL homolog from
Neisseria gonorrhoeae forms an inverted homodimer. PLoS One. 2010 Oct 28;5(10):e13726. doi: 10.1371/journal.pone.0013726.
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Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. Hoogsteen base pair formation promotes synthesis opposite the 1,N6-ethenodeoxyadenosine lesion by human DNA polymerase iota. Nat Struct Mol Biol. 2006 Jul;13(7):619-25. Epub 2006 2 July
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Sharma A, Subramanian V, Nair DT. The PAD region in the mycobacterial DinB homologue MsPolIV exhibits positional heterogeneity. Acta
Crystallogr D Biol Crystallogr. 2012 Aug;68(Pt 8):960-7. doi: 10.1107/S0907444912017623. Epub 2012 Jul 17.
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Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. An incoming nucleotide imposes an anti to syn conformational change on the templating purine in the human DNA polymerase-iota active site. Structure. 2006 Apr;14(4):749-55.
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Lone S, Townson SA, Uljon SN, Johnson RE, Brahma A, Nair DT, Prakash S, Prakash L, Aggarwal AK. Human DNA polymerase kappa encircles DNA: implications for mismatch extension and lesion bypass. Mol Cell. 2007 Feb 23;25(4):601-14.
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Gupta YK, Nair DT, Wharton RP, Aggarwal AK. Structures of human Pumilio with noncognate RNAs reveal molecular mechanisms for binding promiscuity. Structure. 2008 Apr;16(4):549-57. doi: 10.1016/j.str.2008.01.006. Epub 2008 Mar 6.
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Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. Protein-template-directed synthesis across an acrolein-derived DNA adduct by yeast Rev1 DNA polymerase. Structure. 2008 Feb;16(2):239-45. doi: 10.1016/j.str.2007.12.009.
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Ghodke, Pratibha P.; Bommisetti, Praneeth; Nair, Deepak T.; Pradeepkumar, P. I. (10 January 2019). "Synthesis of N-Deoxyguanosine Modified DNAs and the Studies on Their Translesion Synthesis by the E. coli DNA Polymerase IV".
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Sharma A, Nair DT. MsDpo4-a DinB Homolog from Mycobacterium smegmatis-Is an Error-Prone DNA Polymerase That Can Promote G:T and T:G Mismatches. J Nucleic Acids. 2012;2012:285481. doi: 10.1155/2012/285481. Epub 2012 Mar 15.
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Ghodke, Pratibha P.; Gore, Kiran R.; Harikrishna, S.; Samanta, Biswajit; Kottur, Jithesh; Nair, Deepak T.; Pradeepkumar, P. I. (4 January 2016). "The N-Furfuryl-deoxyguanosine Adduct Does Not Alter the Structure of B-DNA".
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Narayanan, N.; Banerjee, A.; Jain, D.; Kulkarni, D. S.; Sharma, R.; Nirwal, S.; Rao, D. N.; Nair, D. T. (2020). "Tetramerization at Low pH Licenses DNA Methylation Activity of M.HpyAXI in the Presence of Acid Stress".
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Narayanan, N.; Banerjee, A.; Jain, D.; Kulkarni, D. S.; Sharma, R.; Nirwal, S.; Rao, D. N.; Nair, D. T. (2020). "Tetramerization at Low pH Licenses DNA Methylation Activity of M.HpyAXI in the Presence of Acid Stress".
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Jain D, Nair DT. Spacing between core recognition motifs determines relative orientation of AraR monomers on bipartite operators. Nucleic Acids Res. 2013 Jan 7;41(1):639-47. doi: 10.1093/nar/gks962. Epub 2012 Oct 29.
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Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. DNA synthesis across an abasic lesion by yeast REV1 DNA polymerase. J Mol Biol. 2011 Feb 11;406(1):18β28. doi: 10.1016/j.jmb.2010.12.016. Epub 2010 Dec 15.
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Nair DT, Singh K, Sahu N, Rao KV, Salunke DM. Crystal structure of an antibody bound to an immunodominant peptide epitope: novel features in peptide-antibody recognition. J Immunol. 2000 Dec 15;165(12):6949-55.
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335:). He also plays a key role in the development and management of the Indian Biological Data Centre, which will serve as a digital repository for all research data generated in the area of Life Sciences (
219:, one of the highest Indian science awards, for his contributions to biological sciences in 2017. He was inducted as a fellow of the Indian National Science Academy (New Delhi, India) in December, 2022.
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M. Fast native-SAD phasing for routine macromolecular structure determination. Nat Methods. 2015 Feb;12(2):131-3. doi: 10.1038/nmeth.3211. Epub 2014 Dec 15. Erratum in: Nat Methods. 2015 Jul;12(7):692.
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Nair DT, Singh K, Siddiqui Z, Nayak BP, Rao KV, Salunke DM. Epitope recognition by diverse antibodies suggests conformational convergence in an antibody response. J Immunol. 2002 Mar 1;168(5):2371-82.
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Nayak SK, Bagga S, Gaur D, Nair DT, Salunke DM, Batra JK. Mechanism of specific target recognition and RNA hydrolysis by ribonucleolytic toxin restrictocin. Biochemistry. 2001 Aug 7;40(31):9115-24.
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Jain R, Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. Replication across template T/U by human DNA polymerase-iota. Structure. 2009 Jul 15;17(7):974-80. doi: 10.1016/j.str.2009.04.011.
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Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. DNA synthesis across an abasic lesion by human DNA polymerase iota. Structure. 2009 Apr 15;17(4):530-7. doi: 10.1016/j.str.2009.02.015.
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Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. Human DNA polymerase iota incorporates dCTP opposite template G via a G.C + Hoogsteen base pair. Structure. 2005 Oct;13(10):1569β77.
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Sharma, Rahul; Nirwal, Shivlee; Narayanan, Naveen; Nair, Deepak T. (11 May 2018). "Dimerization through the RING-Finger Domain Attenuates Excision Activity of the piggyBac Transposase".
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Shikhi, Meha; Nair, Deepak T.; Salunke, Dinakar M. (15 October 2018). "Structure-guided identification of function: role of Capsicum annuum vicilin during oxidative stress".
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Nair DT, Johnson RE, Prakash L, Prakash S, Aggarwal AK. Rev1 employs a novel mechanism of DNA synthesis using a protein template. Science. 2005 Sep 30;309(5744):2219-22.
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Nair DT, Johnson RE, Prakash S, Prakash L, Aggarwal AK. Replication by human DNA polymerase-iota occurs by Hoogsteen base-pairing. Nature. 2004 Jul 15;430(6997):377-80.
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513:"The PHP domain of PolX from Staphylococcus aureus aids high fidelity DNA synthesis through the removal of misincorporated deoxyribo-, ribo- and oxidized nucleotides"
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Bhatia, S.; Narayanan, N.; Nagpal, S.; Nair, D. T. (2021). "Antiviral therapeutics directed against RNA dependent RNA polymerases from positive-sense viruses".
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Kottur, Jithesh; Nair, Deepak T. (12 February 2016). "Reactive Oxygen Species Play an Important Role in the Bactericidal Activity of Quinolone Antibiotics".
309:, one of the highest Indian science awards in 2017. He was inducted as a fellow of the Indian National Science Academy (New Delhi, India) in December, 2022.
285:(J. Biol. Chem., 2001, 276:41377). In addition, he modeled the complex of the ribonuclease restriction and its rRNA substrate (Biochemistry, 2001, 40:9115).
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https://indianexpress.com/article/technology/science/from-the-lab-why-some-bacteria-multiply-in-certain-set-ups-and-resist-antibiotics-4881283/
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564:"Ritonavir may inhibit exoribonuclease activity of nsp14 from the SARS-CoV-2 virus and potentiate the activity of chain terminating drugs"
650:"The proofreading activity of Pfprex from Plasmodium falciparum can prevent mutagenesis of the apicoplast genome by oxidized nucleotides"
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1071:"Docking, thermodynamics and molecular dynamics (MD) studies of a non-canonical protease inhibitor, MP-4, from Mucuna pruriens"
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351:"A broadly neutralizing monoclonal antibody overcomes the mutational landscape of emerging SARS-CoV-2 variants of concern"
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Jaiswal, D.; Verma, S.; Nair, D. T.; Salunke, D. M. (2022). "Antibody multispecificity: A necessary evil?".
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Nirwal, Shivlee; Kulkarni, Dhananjaya S; Sharma, Amit; Rao, Desirazu N; Nair, Deepak T (9 January 2018).
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to secure a PhD in structural immunology in 2001. For his PhD he worked under the supervision of Dr.
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Kumar, Ashish; Kaur, Harmeet; Jain, Abha; Nair, Deepak T.; Salunke, Dinakar M. (12 January 2018).
607:"Vitamin B12 may inhibit RNA-dependent-RNA polymerase activity of nsp12 from the SARS-CoV-2 virus"
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as an Associate professor, and was promoted to the position of Professor in July 2019.
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Kumar, Ashish; Gupta, Chitra; Nair, Deepak T.; Salunke, Dinakar M. (13 July 2018).
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Kumar, Ashish; Gupta, Chitra; Nair, Deepak T.; Salunke, Dinakar M. (20 May 2016).
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Jain, A.; Kumar, A.; Shikhi, M.; Kumar, A.; Nair, D. T.; Salunke, D. M. (2020).
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191:(born 25 October 1973) is an Indian Structural Biologist and a scientist at
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National BioScience Award for Career Development (Dept. of Biotechnology)
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Recipients of the Shanti Swarup Bhatnagar Award in Biological Science
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Johnson, Mary K; Kottur, Jithesh; Nair, Deepak T (18 November 2019).
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Acta Crystallographica. Section F, Structural Biology Communications
244:(1996). Subsequently, he enrolled for his doctoral studies at the
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701:"The structure of MP-4 from Mucuna pruriens at 2.22 Γ
resolution"
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Deepak T. Nair was selected for the Ramanujan Fellowship by the
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Academic staff of the National Centre for Biological Sciences
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Nair, Deepak T.; Kottur, Jithesh; Sharma, Rahul (July 2015).
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Shanti Swarup Bhatnagar Prize for Science and Technology
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Shanti Swarup Bhatnagar Prize for Science and Technology
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Seeds through an Indirect Antibody-mediated Mechanism"
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seeds through an indirect antibody-mediated mechanism"
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https://www.rcb.res.in/index.php?param=empdetails/129
1817:"10 scientists receive Shanti Swarup Bhatnagar Prize"
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for the period 2008β2013,. He became a member of the
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Salunke, Dinakar M.; Nair, Deepak T. (August 2017).
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Long link β please select award year to see details
1204:"MP-4 Contributes to Snake Venom Neutralization by
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2116:Tathamangalam Ananthanarayanan Venkitasubramanian
1895:
1893:
1845:. Shanti Swarup Bhatnagar Prize. 21 October 2017
303:National Bioscience Award for Career Development
1024:Kottur, Jithesh; Nair, Deepak T (6 July 2018).
648:Sharma, M.; Narayanan, N.; Nair, D. T. (2020).
3253:Icahn School of Medicine at Mount Sinai alumni
2765:
2027:
213:Council of Scientific and Industrial Research
8:
2007:https://www.youtube.com/watch?v=YfnJ4mh6y6s
2001:https://www.youtube.com/watch?v=hBOn23gwGkI
235:His parents are from the southern state of
2772:
2758:
2750:
2092:Chirayathumadom Venkatachalier Subramanian
2034:
2020:
2012:
28:
17:
1327:
1233:
1223:
1184:
1149:
1139:
1104:
1094:
1051:
1041:
977:
967:
853:
843:
732:
681:
630:
587:
544:
448:
376:
366:
1868:"Biographical Information β Deepak Nair"
3248:Savitribai Phule Pune University alumni
1974:National Centre for Biological Sciences
1783:
1764:
1253:Angewandte Chemie International Edition
258:National Centre for Biological Sciences
246:National Institute of Immunology, India
203:. Deepak was a Ramanujan fellow of the
169:National Centre for Biological Sciences
87:National Institute of Immunology, India
1908:Science and Engineering Research Board
205:Science and Engineering Research Board
1794:. Shanti Swarup Bhatnagar Prize. 2017
7:
605:Narayanan, N.; Nair, D. T. (2020).
562:Narayanan, N.; Nair, D. T. (2021).
349:Parray, H. A.; et al. (2022).
207:(2008β2013) and a recipient of the
14:
2199:Trichnopoly Chelvaraj Anand Kumar
1999:SSB Award Presentation Ceremony:
1874:. 9 November 2017. Archived from
1872:Regional Centre for Biotechnology
262:Regional Centre for Biotechnology
195:. He is known for his studies on
193:Regional Centre for Biotechnology
174:Regional Centre for Biotechnology
2157:Bhyravabhotla Radhakrishna Murty
1745:
1731:
1283:The Journal of Organic Chemistry
874:The Journal of Organic Chemistry
511:Nagpal, S.; Nair, D. T. (2021).
431:Sharma, M.; Nair, D. T. (2022).
242:Savitribai Phule Pune University
82:Savitribai Phule Pune University
1212:Journal of Biological Chemistry
956:Journal of Biological Chemistry
2276:Thavamani Jegajothivel Pandian
1843:"Brief Profile of the Awardee"
580:10.1016/j.ijbiomac.2020.12.038
1:
2923:Sathees Chukkurumbal Raghavan
2631:Sathees Chukkurumbal Raghavan
476:Molecular Aspects of Medicine
307:Shanti Swarup Bhatnagar Prize
130:Shanti Swarup Bhatnagar Prize
2104:Neelamraju Ganga Prasada Rao
2062:Toppur Seethapathy Sadasivan
2005:Science Setu ID75 seminar:
791:Journal of Molecular Biology
753:Journal of Molecular Biology
408:10.1016/j.molimm.2022.10.012
368:10.1371/journal.ppat.1010994
322:Resources for Indian Science
3273:Indian molecular biologists
3076:Suvendra Nath Bhattacharyya
2655:Suvendra Nath Bhattacharyya
2246:Prafullachandra Vishnu Sane
1937:Department of Biotechnology
1009:10.1021/acs.biochem.7b01191
295:Department of Biotechnology
3289:
2560:Gajendra Pal Singh Raghava
2139:Narayana Balakrishnan Nair
1096:10.1038/s41598-017-18733-9
674:10.1038/s41598-020-67853-2
537:10.1038/s41598-021-83498-1
254:Mount Sinai Medical Center
92:Mount Sinai Medical Centre
3167:Beena Ramakrishnan Pillai
2151:Satish Chandra Maheshwari
1792:"View Bhatnagar Awardees"
803:10.1016/j.jmb.2019.10.001
765:10.1016/j.jmb.2019.10.001
725:10.1107/S2053230X20000199
488:10.1016/j.mam.2021.101005
301:in 2013. He received the
182:
138:
27:
3223:Indian medical academics
2821:Ravishankar Ramachandran
2554:Narayanaswamy Srinivasan
2435:Kanury Venkata Subba Rao
2328:Subhash Chandra Lakhotia
2316:Bhabatarak Bhattacharyya
2270:Govindarajan Padmanabhan
969:10.1074/jbc.EC118.001735
299:Guha Research Conference
3268:Indian biotechnologists
3243:N-BIOS Prize recipients
2423:Vishweshwaraiah Prakash
2369:Kuppamuthu Dharmalingam
1988:"Deepak T Nair at RCB "
1970:"Deepak T Nair on NCBS"
1723:Molecular self-assembly
1295:10.1021/acs.joc.5b02341
1225:10.1074/jbc.M115.699173
886:10.1021/acs.joc.8b02082
337:https://ibdc.rcb.res.in
333:https://atpc.rcb.res.in
329:https://esrf.rcb.res.in
240:biotechnology from the
3238:Scientists from Kerala
3025:Deepak Thankappan Nair
2831:Dipshikha Chakravortty
2613:Rajan Sankaranarayanan
2476:Dinakar Mashnu Salunke
2429:Jayaraman Gowrishankar
1939:. 2014. Archived from
1265:10.1002/anie.201509340
1128:Nucleic Acids Research
1030:Nucleic Acids Research
832:Nucleic Acids Research
250:Dinakar Mashnu Salunke
232:
189:Deepak Thankappan Nair
3177:Mohammad Zahid Ashraf
2836:Debasis Chattopadhyay
2801:Balasubramanian Gopal
2649:Rajeev Kumar Varshney
2643:Balasubramanian Gopal
2542:Rajesh Sudhir Gokhale
2500:Amitabha Mukhopadhyay
2217:M. K. Chandrashekaran
2145:Birendra Bijoy Biswas
2074:Bimal Kumar Bachhawat
230:
34:Prof . Deepak T. Nair
3182:Ranjith Padinhateeri
3137:Subhadeep Chatterjee
3106:Girdhar Kumar Pandey
3050:Kausik Chattopadhyay
2958:Naval Kishore Vikram
2708:Subhadeep Chatterjee
2548:Upinder Singh Bhalla
2518:Ramesh Venkata Sonti
2494:Raghavan Varadarajan
2393:Ramakrishnan Nagaraj
2381:Raghavendra Gadagkar
2357:Virendra Nath Pandey
2351:Samir K. Brahmachari
2264:Ramamirtha Jayaraman
2086:Dilbagh Singh Athwal
396:Molecular Immunology
327:Radiation Facility (
3187:Suresh Kumar Rayala
3162:Maddika Subba Reddy
2953:Aditya Bhushan Pant
2877:Maneesha S. Inamdar
2811:Vinay K. Nandicoori
2783:Laureates 2010β2019
2738:Maddika Subba Reddy
2691:Kayarat Saikrishnan
2661:Rishikesh Narayanan
2607:Amit Prakash Sharma
2512:Gopal Chandra Kundu
2482:Jayant B. Udgaonkar
2311:Sudhir Kumar Sopory
2240:Jamuna Sharan Singh
2163:Sardul Singh Guraya
2133:Madhu Sudan Kanungo
1930:"N-BIOS Prize 2014"
1823:. 26 September 2017
1218:(21): 11373β11384.
1141:10.1093/nar/gkx1149
1087:2018NatSR...8..689K
923:10.1042/BCJ20180520
911:Biochemical Journal
838:(20): 10693β10705.
717:2020AcCrF..76...47J
666:2020NatSR..1011157S
529:2021NatSR..11.4178N
313:Academic Activities
3127:Manas Kumar Santra
2989:Alok Krishna Sinha
2979:Govindan Rajamohan
2796:Shantanu Chowdhury
2714:Vatsala Thirumalai
2685:Thomas J. Pucadyil
2619:Shantanu Chowdhury
2459:Valakunja Nagaraja
2447:Debi Prasad Sarkar
2375:Dipankar Chatterji
2363:Srinivas Kishanrao
2258:Sunil Kumar Podder
2187:Guru Prakash Dutta
2048:Biological Science
1976:. 15 November 2017
1910:. 14 November 2017
1878:on 5 November 2017
1075:Scientific Reports
1043:10.1093/nar/gky402
845:10.1093/nar/gkz792
654:Scientific Reports
517:Scientific Reports
450:10.1111/febs.16414
233:
231:University of Pune
3205:
3204:
3152:Arun Kumar Shukla
2887:Shantanu Sengupta
2747:
2746:
2726:Arun Kumar Shukla
2566:L. S. Shashidhara
2524:Tapas Kumar Kundu
2411:Kalappa Muniyappa
2399:Alok Bhattacharya
2306:Avadhesha Surolia
2288:Chhitar Mal Gupta
2282:K. R. K. Easwaran
2211:Amar Nath Bhaduri
2110:Arun Kumar Sharma
2098:Hari Krishan Jain
2080:Jagannath Ganguly
2068:M. S. Swaminathan
1901:"Profile on SERB"
1036:(12): 5875β5885.
1003:(20): 2913β2922.
917:(19): 3057β3071.
617:(10): 2112β2120.
443:(17): 5218β5240.
289:Awards and honors
283:Antheraea mylitta
186:
185:
153:Molecular biology
140:Scientific career
3280:
3132:Dipyaman Ganguly
3081:H. V. Thulasiram
2938:S. Venkata Mohan
2816:Suman Kumar Dhar
2774:
2767:
2760:
2751:
2625:Suman Kumar Dhar
2530:Shekhar C. Mande
2441:K. VijayRaghavan
2417:Ghanshyam Swarup
2405:Seyed E. Hasnain
2036:
2029:
2022:
2013:
1985:
1983:
1981:
1956:
1955:
1953:
1951:
1945:
1934:
1926:
1920:
1919:
1917:
1915:
1905:
1897:
1888:
1887:
1885:
1883:
1864:
1855:
1854:
1852:
1850:
1839:
1833:
1832:
1830:
1828:
1813:
1804:
1803:
1801:
1799:
1788:
1772:
1769:
1755:
1750:
1749:
1741:
1736:
1735:
1734:
1341:
1331:
1329:10.1002/iub.1403
1306:
1276:
1259:(7): 2397β2400.
1247:
1237:
1227:
1198:
1188:
1186:10.1002/iub.1640
1163:
1153:
1143:
1118:
1108:
1098:
1065:
1055:
1045:
1020:
991:
981:
971:
942:
905:
880:(4): 1734β1747.
867:
857:
847:
822:
784:
746:
736:
695:
685:
644:
634:
623:10.1002/iub.2359
601:
591:
558:
548:
507:
470:
452:
437:The FEBS Journal
427:
390:
380:
370:
361:(12): e1010994.
53:
49:
47:
32:
18:
3288:
3287:
3283:
3282:
3281:
3279:
3278:
3277:
3263:Malayali people
3208:
3207:
3206:
3201:
3192:Prabhu B. Patil
3115:
3111:Sanjib Senapati
3096:Pravindra Kumar
3071:Ganesh Nagaraju
3054:
3040:Patrick D'Silva
3030:Ramandeep Singh
2993:
2984:A. K. Mukherjee
2967:
2928:Asad Ullah Khan
2906:
2897:Dibyendu Sarkar
2845:
2784:
2778:
2748:
2743:
2696:
2679:Ganesh Nagaraju
2595:Sanjeev Galande
2583:
2464:
2387:M. R. N. Murthy
2339:
2222:
2205:V. Sasisekharan
2121:
2050:
2040:
1979:
1977:
1968:
1965:
1960:
1959:
1949:
1947:
1943:
1932:
1928:
1927:
1923:
1913:
1911:
1903:
1899:
1898:
1891:
1881:
1879:
1866:
1865:
1858:
1848:
1846:
1841:
1840:
1836:
1826:
1824:
1815:
1814:
1807:
1797:
1795:
1790:
1789:
1785:
1780:
1775:
1770:
1766:
1762:
1751:
1744:
1737:
1732:
1730:
1727:
1309:
1279:
1250:
1206:Mucuna pruriens
1201:
1166:
1121:
1068:
1023:
994:
950:Mucuna pruriens
945:
908:
870:
825:
787:
749:
711:(Pt 2): 47β57.
698:
647:
604:
561:
510:
473:
430:
393:
348:
345:
324:
315:
291:
270:
225:
201:RNA polymerases
178:
157:
134:
110:RNA polymerases
106:DNA polymerases
96:
75:Alma mater
60:
54:
51:
50:25 October 1973
45:
43:
35:
23:
12:
11:
5:
3286:
3284:
3276:
3275:
3270:
3265:
3260:
3255:
3250:
3245:
3240:
3235:
3230:
3225:
3220:
3210:
3209:
3203:
3202:
3200:
3199:
3194:
3189:
3184:
3179:
3174:
3169:
3164:
3159:
3154:
3149:
3144:
3139:
3134:
3129:
3123:
3121:
3117:
3116:
3114:
3113:
3108:
3103:
3101:Anurag Agrawal
3098:
3093:
3088:
3083:
3078:
3073:
3068:
3062:
3060:
3056:
3055:
3053:
3052:
3047:
3042:
3037:
3035:Fayaz A. Malik
3032:
3027:
3022:
3017:
3012:
3010:Bikramjit Basu
3007:
3001:
2999:
2995:
2994:
2992:
2991:
2986:
2981:
2975:
2973:
2969:
2968:
2966:
2965:
2963:Kaustuv Sanyal
2960:
2955:
2950:
2945:
2940:
2935:
2930:
2925:
2920:
2914:
2912:
2908:
2907:
2905:
2904:
2899:
2894:
2889:
2884:
2879:
2874:
2869:
2867:Santasabuj Das
2864:
2859:
2857:Sagar Sengupta
2853:
2851:
2847:
2846:
2844:
2843:
2838:
2833:
2828:
2823:
2818:
2813:
2808:
2803:
2798:
2792:
2790:
2786:
2785:
2779:
2777:
2776:
2769:
2762:
2754:
2745:
2744:
2742:
2741:
2735:
2729:
2723:
2717:
2711:
2704:
2702:
2698:
2697:
2695:
2694:
2688:
2682:
2676:
2670:
2667:Deepak T. Nair
2664:
2658:
2652:
2646:
2640:
2634:
2628:
2622:
2616:
2610:
2604:
2598:
2591:
2589:
2585:
2584:
2582:
2581:
2575:
2569:
2563:
2557:
2551:
2545:
2539:
2533:
2527:
2521:
2515:
2509:
2506:Satyajit Mayor
2503:
2497:
2491:
2488:Umesh Varshney
2485:
2479:
2472:
2470:
2466:
2465:
2463:
2462:
2456:
2453:Siddhartha Roy
2450:
2444:
2438:
2432:
2426:
2420:
2414:
2408:
2402:
2396:
2390:
2384:
2378:
2372:
2366:
2360:
2354:
2347:
2345:
2341:
2340:
2338:
2337:
2331:
2325:
2319:
2313:
2308:
2303:
2297:
2291:
2285:
2279:
2273:
2267:
2261:
2255:
2249:
2243:
2237:
2230:
2228:
2224:
2223:
2221:
2220:
2214:
2208:
2202:
2196:
2190:
2184:
2181:Archana Sharma
2178:
2172:
2166:
2160:
2154:
2148:
2142:
2136:
2129:
2127:
2123:
2122:
2120:
2119:
2113:
2107:
2101:
2095:
2089:
2083:
2077:
2071:
2065:
2058:
2056:
2052:
2051:
2042:Recipients of
2041:
2039:
2038:
2031:
2024:
2016:
2010:
2009:
2003:
1997:
1992:
1986:
1964:
1963:External links
1961:
1958:
1957:
1946:on 11 May 2021
1921:
1889:
1856:
1834:
1805:
1782:
1781:
1779:
1776:
1774:
1773:
1763:
1761:
1758:
1757:
1756:
1753:Biology portal
1742:
1726:
1725:
1720:
1714:
1713:
1712:
1708:
1707:
1695:
1684:
1672:
1661:
1649:
1638:
1627:
1616:
1604:
1592:
1580:
1568:
1556:
1537:
1518:
1498:
1478:
1458:
1438:
1426:
1406:
1386:
1366:
1354:
1342:
1322:(7): 564β574.
1307:
1289:(2): 502β511.
1277:
1248:
1199:
1179:(8): 563β571.
1164:
1134:(1): 256β266.
1119:
1066:
1021:
992:
943:
906:
868:
823:
797:(2): 324β342.
785:
759:(2): 324β342.
747:
696:
645:
602:
559:
508:
471:
428:
391:
355:PLOS Pathogens
344:
341:
323:
320:
314:
311:
290:
287:
269:
266:
224:
221:
184:
183:
180:
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165:
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159:
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155:
149:
147:
143:
142:
136:
135:
133:
132:
126:
119:
117:
113:
112:
102:
101:Known for
98:
97:
95:
94:
89:
84:
78:
76:
72:
71:
66:
62:
61:
55:
41:
37:
36:
33:
25:
24:
22:Deepak T. Nair
21:
13:
10:
9:
6:
4:
3:
2:
3285:
3274:
3271:
3269:
3266:
3264:
3261:
3259:
3256:
3254:
3251:
3249:
3246:
3244:
3241:
3239:
3236:
3234:
3233:Living people
3231:
3229:
3226:
3224:
3221:
3219:
3216:
3215:
3213:
3198:
3195:
3193:
3190:
3188:
3185:
3183:
3180:
3178:
3175:
3173:
3172:Ashwani Kumar
3170:
3168:
3165:
3163:
3160:
3158:
3155:
3153:
3150:
3148:
3145:
3143:
3140:
3138:
3135:
3133:
3130:
3128:
3125:
3124:
3122:
3118:
3112:
3109:
3107:
3104:
3102:
3099:
3097:
3094:
3092:
3089:
3087:
3084:
3082:
3079:
3077:
3074:
3072:
3069:
3067:
3064:
3063:
3061:
3057:
3051:
3048:
3046:
3043:
3041:
3038:
3036:
3033:
3031:
3028:
3026:
3023:
3021:
3018:
3016:
3013:
3011:
3008:
3006:
3003:
3002:
3000:
2996:
2990:
2987:
2985:
2982:
2980:
2977:
2976:
2974:
2970:
2964:
2961:
2959:
2956:
2954:
2951:
2949:
2946:
2944:
2941:
2939:
2936:
2934:
2933:Munia Ganguli
2931:
2929:
2926:
2924:
2921:
2919:
2918:Vidita Vaidya
2916:
2915:
2913:
2909:
2903:
2900:
2898:
2895:
2893:
2892:Sujata Sharma
2890:
2888:
2885:
2883:
2880:
2878:
2875:
2873:
2870:
2868:
2865:
2863:
2860:
2858:
2855:
2854:
2852:
2848:
2842:
2839:
2837:
2834:
2832:
2829:
2827:
2824:
2822:
2819:
2817:
2814:
2812:
2809:
2807:
2804:
2802:
2799:
2797:
2794:
2793:
2791:
2787:
2782:
2775:
2770:
2768:
2763:
2761:
2756:
2755:
2752:
2739:
2736:
2733:
2732:Ashwani Kumar
2730:
2727:
2724:
2721:
2718:
2715:
2712:
2709:
2706:
2705:
2703:
2699:
2692:
2689:
2686:
2683:
2680:
2677:
2674:
2671:
2668:
2665:
2662:
2659:
2656:
2653:
2650:
2647:
2644:
2641:
2638:
2635:
2632:
2629:
2626:
2623:
2620:
2617:
2614:
2611:
2608:
2605:
2602:
2599:
2596:
2593:
2592:
2590:
2586:
2579:
2576:
2573:
2572:Amitabh Joshi
2570:
2567:
2564:
2561:
2558:
2555:
2552:
2549:
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3142:Soumen Basak
3091:Souvik Maiti
3024:
3015:Debasis Dash
3005:Manoj Prasad
2948:Subrata Adak
2943:Durai Sundar
2902:M. M. Parida
2882:Asif Mohmmed
2872:Ashish Arora
2841:Anirban Basu
2806:R. Ashalatha
2666:
2578:Bhaskar Saha
2322:M. R. S. Rao
2252:Sushil Kumar
2193:Kishan Singh
1978:. Retrieved
1973:
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1941:the original
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1876:the original
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1739:India portal
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124:N-BIOS Prize
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3228:1973 births
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3020:Ashish Suri
2862:Niyaz Ahmed
2673:Sanjeev Das
2637:Roop Mallik
2601:Shubha Tole
1980:15 November
1950:14 November
1914:14 November
1827:11 November
1798:11 November
574:: 272β278.
523:(1): 4178.
402:: 153β161.
104:Studies on
65:Nationality
3212:Categories
3197:Pritam Deb
3157:Amit Singh
2720:Amit Singh
2294:M. Vijayan
2234:Asis Datta
1882:9 November
1849:21 October
1778:References
1316:IUBMB Life
1173:IUBMB Life
1081:(1): 689.
611:IUBMB Life
482:: 101005.
128:2017
122:2014
46:1973-10-25
2826:P. Karthe
2334:Manju Ray
1821:The Hindu
819:204799499
781:204799499
504:236451133
467:247156702
424:253398776
223:Biography
1711:See also
1704:11120821
1692:11478878
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692:32636411
641:32812340
598:33309661
555:33603016
496:34311994
459:35220686
416:36368122
387:36508467
268:Research
3120:2017/18
1553:2703454
1534:3030472
1515:2965676
1495:3127253
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1455:3317225
1423:3592433
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1383:3936712
1235:4900281
1151:5758902
1106:5766534
1083:Bibcode
1053:6159520
979:6052230
855:6846668
734:7010354
713:Bibcode
683:7341739
662:Bibcode
632:7461454
589:7724963
546:7893174
525:Bibcode
378:9779650
59:, India
2781:N-BIOS
2740:(2022)
2734:(2022)
2728:(2021)
2722:(2021)
2716:(2020)
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237:Kerala
211:. The
146:Fields
116:Awards
69:Indian
2701:2020s
2588:2010s
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2344:1990s
2227:1980s
2126:1970s
2055:1960s
1944:(PDF)
1933:(PDF)
1904:(PDF)
1760:Notes
935:S2CID
898:S2CID
815:S2CID
777:S2CID
500:S2CID
463:S2CID
420:S2CID
339:).
3059:2015
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199:and
108:and
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40:Born
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197:DNA
3214::
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