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NTIS 바로가기PloS one, v.15 no.5, 2020년, pp.e0232029 -
Koo, Namjin (Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Shin, Ah-Young (Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Oh, Sangho (Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Kim, Hyeongmin (Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Hong, Seongmin (Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Park, Seong-Jin (Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Sim, Young Mi (Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Byeon, Iksu (Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea) , Kim, Kye Young (Korean Bioinformation Center, Korea Research Instit) , Lim, Yong Pyo , Kwon, Suk-Yoon , Kim, Yong-Min
BackgroundTranslationally controlled tumor protein (TCTP) is a conserved, multifunctional protein involved in numerous cellular processes in eukaryotes. Although the functions of TCTP have been investigated sporadically in animals, invertebrates, and plants, few lineage-specific activities of this m...
1 Chitpatima ST , Makrides S , Bandyopadhyay R , Brawerman G . Nucleotide sequence of a major messenger RNA for a 21 kilodalton polypeptide that is under translational control in mouse tumor cells . Nucleic Acids Res . 1988 ; 16 ( 5 ): 2350 10.1093/nar/16.5.2350 . . 3357792
2 Gross B , Gaestel M , Bohm H , Bielka H . cDNA sequence coding for a translationally controlled human tumor protein . Nucleic Acids Res . 1989 ; 17 ( 20 ): 8367 10.1093/nar/17.20.8367 . 2813067
3 Chen SH , Wu PS , Chou CH , Yan YT , Liu H , Weng SY , et al A knockout mouse approach reveals that TCTP functions as an essential factor for cell proliferation and survival in a tissue- or cell type-specific manner . Mol Biol Cell . 2007 ; 18 ( 7 ): 2525 ? 32 . https://10.1091/mbc.E07-02-0188 . . 17475776
4 Hsu YC , Chern JJ , Cai Y , Liu M , Choi KW . Drosophila TCTP is essential for growth and proliferation through regulation of dRheb GTPase . Nature . 2007 ; 445 ( 7129 ): 785 ? 8 . https://10.1038/nature05528 . . 17301792
5 Kim YM , Han YJ , Hwang OJ , Lee SS , Shin AY , Kim SY , et al Overexpression of Arabidopsis translationally controlled tumor protein gene AtTCTP enhances drought tolerance with rapid ABA-induced stomatal closure . Mol Cells . 2012 ; 33 ( 6 ): 617 ? 26 . https://10.1007/s10059-012-0080-8 . . 22610367
6 Thiele H , Berger M , Skalweit A , Thiele BJ . Expression of the gene and processed pseudogenes encoding the human and rabbit translationally controlled tumour protein (TCTP) . Eur J Biochem . 2000 ; 267 ( 17 ): 5473 ? 81 . 10.1046/j.1432-1327.2000.01609.x . . 10951206
7 Bommer UA , Thiele BJ . The translationally controlled tumour protein (TCTP) . Int J Biochem Cell Biol . 2004 ; 36 ( 3 ): 379 ? 85 . 10.1016/S1357-2725(03)00213-9 . . 14687915
8 Gachet Y , Tournier S , Lee M , Lazaris-Karatzas A , Poulton T , Bommer UA . The growth-related, translationally controlled protein P23 has properties of a tubulin binding protein and associates transiently with microtubules during the cell cycle . J Cell Sci . 1999 ; 112 ( Pt 8 ): 1257 ? 71 . . 10085260
9 Tuynder M , Fiucci G , Prieur S , Lespagnol A , Geant A , Beaucourt S , et al Translationally controlled tumor protein is a target of tumor reversion . Proc Natl Acad Sci U S A . 2004 ; 101 ( 43 ): 15364 ? 9 . https://10.1073/pnas.0406776101 . . 15489264
10 Li F , Zhang D , Fujise K . Characterization of fortilin, a novel antiapoptotic protein . J Biol Chem . 2001 ; 276 ( 50 ): 47542 ? 9 . https://10.1074/jbc.M108954200 . . 11598139
11 Liu H , Peng HW , Cheng YS , Yuan HS , Yang-Yen HF . Stabilization and enhancement of the antiapoptotic activity of mcl-1 by TCTP . Mol Cell Biol . 2005 ; 25 ( 8 ): 3117 ? 26 . https://10.1128/MCB.25.8.3117-3126.2005 . . 15798198
12 Susini L , Besse S , Duflaut D , Lespagnol A , Beekman C , Fiucci G , et al TCTP protects from apoptotic cell death by antagonizing bax function . Cell death and differentiation . 2008 ; 15 ( 8 ): 1211 ? 20 . Epub 2008/02/16. https://10.1038/cdd.2008.18 . . 18274553
13 Yang Y , Yang F , Xiong Z , Yan Y , Wang X , Nishino M , et al An N-terminal region of translationally controlled tumor protein is required for its antiapoptotic activity . Oncogene . 2005 ; 24 ( 30 ): 4778 ? 88 . https://10.1038/sj.onc.1208666 . . 15870695
14 MacDonald SM , Rafnar T , Langdon J , Lichtenstein LM . Molecular identification of an IgE- dependent histamine-releasing factor . Science . 1995 ; 269 ( 5224 ): 688 ? 90 . https://10.1126/science.7542803 . . 7542803
15 Koziol MJ , Gurdon JB . TCTP in development and cancer . Biochem Res Int . 2012 ; 2012 : 105203 https://10.1155/2012/105203 . . 22649730
16 Amson R , Pece S , Marine JC , Di Fiore PP , Telerman A . TPT1/ TCTP-regulated pathways in phenotypic reprogramming . Trends Cell Biol . 2013 ; 23 ( 1 ): 37 ? 46 . https://10.1016/j.tcb.2012.10.002 . . 23122550
17 Brioudes F , Thierry AM , Chambrier P , Mollereau B , Bendahmane M . Translationally controlled tumor protein is a conserved mitotic growth integrator in animals and plants . Proc Natl Acad Sci U S A . 2010 ; 107 ( 37 ): 16384 ? 9 . https://10.1073/pnas.1007926107 . . 20736351
18 Gnanasekar M , Thirugnanam S , Zheng G , Chen A , Ramaswamy K . Gene silencing of translationally controlled tumor protein (TCTP) by siRNA inhibits cell growth and induces apoptosis of human prostate cancer cells . Int J Oncol . 2009 ; 34 ( 5 ): 1241 ? 6 . 10.3892/ijo_00000252 . . 19360337
19 Thaw P , Baxter NJ , Hounslow AM , Price C , Waltho JP , Craven CJ . Structure of TCTP reveals unexpected relationship with guanine nucleotide-free chaperones . Nat Struct Biol . 2001 ; 8 ( 8 ): 701 ? 4 . https://10.1038/90415 . . 11473261
20 Thebault S , Agez M , Chi X , Stojko J , Cura V , Telerman SB , et al TCTP contains a BH3-like domain, which instead of inhibiting, activates Bcl-xL . Scientific reports . 2016 ; 6 : 19725 https://10.1038/srep19725 . . 26813996
21 Feng Y , Liu D , Yao H , Wang J . Solution structure and mapping of a very weak calcium-binding site of human translationally controlled tumor protein by NMR . Arch Biochem Biophys . 2007 ; 467 ( 1 ): 48 ? 57 . https://10.1016/j.abb.2007.08.021 . . 17897616
22 Hinojosa-Moya J , Xoconostle-Cazares B , Piedra-Ibarra E , Mendez-Tenorio A , Lucas WJ , Ruiz-Medrano R . Phylogenetic and structural analysis of translationally controlled tumor proteins . J Mol Evol . 2008 ; 66 ( 5 ): 472 ? 83 . https://10.1007/s00239-008-9099-z . . 18392759
25 Saitou N , Nei M . The neighbor-joining method: a new method for reconstructing phylogenetic trees . Mol Biol Evol . 1987 ; 4 ( 4 ): 406 ? 25 . 10.1093/oxfordjournals.molbev.a040454 . . 3447015
26 Kumar S , Stecher G , Li M , Knyaz C , Tamura K . MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms . Mol Biol Evol . 2018 ; 35 ( 6 ): 1547 ? 9 . Epub 2018/05/04. 10.1093/molbev/msy096 29722887
27 Larkin MA , Blackshields G , Brown NP , Chenna R , McGettigan PA , McWilliam H , et al Clustal W and Clustal X version 2.0 . Bioinformatics . 2007 ; 23 ( 21 ): 2947 ? 8 . https://10.1093/bioinformatics/btm404 . 17846036
28 Crooks GE , Hon G , Chandonia J-M , Brenner SE . WebLogo: a sequence logo generator . Genome research . 2004 ; 14 ( 6 ): 1188 ? 90 . 10.1101/gr.849004 15173120
29 Szklarczyk D , Franceschini A , Wyder S , Forslund K , Heller D , Huerta-Cepas J , et al STRING v10: protein-protein interaction networks, integrated over the tree of life . Nucleic Acids Res . 2015 ; 43 ( Database issue ): D447 ? 52 . https://10.1093/nar/gku1003 . . 25352553
30 The UniProt C . UniProt: the universal protein knowledgebase . Nucleic Acids Res . 2017 ; 45 ( D1 ): D158 ? D69 . https://10.1093/nar/gkw1099 . . 27899622
31 McGinnis S , Madden TL . BLAST: at the core of a powerful and diverse set of sequence analysis tools . Nucleic Acids Research . 2004 ; 32 ( suppl_2 ): W20 ? W5 . https://10.1093/nar/gkh435 . 15215342
32 Berman HM , Westbrook J , Feng Z , Gilliland G , Bhat TN , Weissig H , et al The Protein Data Bank, 1999?. International Tables for Crystallography Volume F: Crystallography of biological macromolecules : Springer ; 2006 p. 675 ? 84 .
33 Di Tommaso P , Moretti S , Xenarios I , Orobitg M , Montanyola A , Chang J-M , et al T-Coffee: a web server for the multiple sequence alignment of protein and RNA sequences using structural information and homology extension . Nucleic acids research . 2011 ; 39 ( suppl_2 ): W13 ? W7 . 10.1093/nar/gkr245 . 21558174
34 Benjamin W , Sali A . Comparative protein structure modeling using . Modeller Curr Protoc bioinfo . 2014 ; 47 : 5 ? 6 . 10.1002/cpbi.3 .
35 Davis IW , Leaver-Fay A , Chen VB , Block JN , Kapral GJ , Wang X , et al MolProbity: all-atom contacts and structure validation for proteins and nucleic acids . Nucleic acids research . 2007 ; 35 ( suppl_2 ): W375 ? W83 . 10.1093/nar/gkm216 . 17452350
36 Roy A , Kucukural A , Zhang Y . I-TASSER: a unified platform for automated protein structure and function prediction . Nature protocols . 2010 ; 5 ( 4 ): 725 10.1038/nprot.2010.5 20360767
37 Kabsch W , Sander C . Dictionary of protein secondary structure: pattern recognition of hydrogen-bonded and geometrical features . Biopolymers . 1983 ; 22 ( 12 ): 2577 ? 637 . https://10.1002/bip.360221211 . . 6667333
38 Wang P , Hu L , Liu G , Jiang N , Chen X , Xu J , et al Prediction of antimicrobial peptides based on sequence alignment and feature selection methods . PloS one . 2011 ; 6 ( 4 ): e18476 10.1371/journal.pone.0018476 21533231
39 Jung J , Lee B . Protein structure alignment using environmental profiles . Protein Engineering, Design and Selection . 2000 ; 13 ( 8 ): 535 ? 43 . https://10.1093/protein/13.8.535 .
40 Schneidman-Duhovny D , Inbar Y , Nussinov R , Wolfson HJ . PatchDock and SymmDock: servers for rigid and symmetric docking . Nucleic Acids Res . 2005 ; 33 ( Web Server issue ): W363 ? 7 . https://10.1093/nar/gki481 . . 15980490
41 Mashiach E , Nussinov R , Wolfson HJ . FiberDock: Flexible induced-fit backbone refinement in molecular docking . Proteins . 2010 ; 78 ( 6 ): 1503 ? 19 . https://10.1002/prot.22668 . . 20077569
42 Maier JA , Martinez C , Kasavajhala K , Wickstrom L , Hauser KE , Simmerling C . ff14SB: Improving the Accuracy of Protein Side Chain and Backbone Parameters from ff99SB . J Chem Theory Comput . 2015 ; 11 ( 8 ): 3696 ? 713 . https://10.1021/acs.jctc.5b00255 . . 26574453
43 Pettersen EF , Goddard TD , Huang CC , Couch GS , Greenblatt DM , Meng EC , et al UCSF Chimera―a visualization system for exploratory research and analysis . J Comput Chem . 2004 ; 25 ( 13 ): 1605 ? 12 . https://10.1002/jcc.20084 . . 15264254
44 Kundrotas PJ , Alexov E . Electrostatic properties of protein-protein complexes . Biophysical journal . 2006 ; 91 ( 5 ): 1724 ? 36 . 10.1529/biophysj.106.086025 . 16782791
45 Yao X , Liu YJ , Cui Q , Feng Y . Solution structure of a unicellular microalgae-derived translationally controlled tumor protein revealed both conserved features and structural diversity . Arch Biochem Biophys . 2019 ; 665 : 23 ? 9 . Epub 2019/02/25. 10.1016/j.abb.2019.02.012 30797749
46 Cans C , Passer BJ , Shalak V , Nancy-Portebois V , Crible V , Amzallag N , et al Translationally controlled tumor protein acts as a guanine nucleotide dissociation inhibitor on the translation elongation factor eEF1A . Proceedings of the National Academy of Sciences . 2003 ; 100 ( 24 ): 13892 ? 7 . 10.1073/pnas.2335950100 14623968
47 Langdon JM , Vonakis BM , MacDonald SM . Identification of the interaction between the human recombinant histamine releasing factor/translationally controlled tumor protein and elongation factor-1 delta (also known as eElongation factor-1B beta) . Biochimica et Biophysica Acta (BBA)―Molecular Basis of Disease . 2004 ; 1688 ( 3 ): 232 ? 6 . 10.1016/j.bbadis.2003.12.007 . 15062873
48 Wu H , Gong W , Yao X , Wang J , Perrett S , Feng Y . Evolutionarily conserved binding of translationally controlled tumor protein to eukaryotic elongation factor 1B . J Biol Chem . 2015 ; 290 ( 14 ): 8694 ? 710 . Epub 2015/01/31. 10.1074/jbc.M114.628594 . 25635048
49 Hoepflinger MC , Reitsamer J , Geretschlaeger AM , Mehlmer N , Tenhaken R . The effect of translationally controlled tumour protein (TCTP) on programmed cell death in plants . BMC plant biology . 2013 ; 13 : 135 https://10.1186/1471-2229-13-135 . . 24040826
50 Soding J , Biegert A , Lupas AN . The HHpred interactive server for protein homology detection and structure prediction . Nucleic Acids Res . 2005 ; 33 ( Web Server issue ): W]244 ? 8 . https://10.1093/nar/gki408 . . 15980461
51 Eswar N , Webb B , Marti-Renom MA , Madhusudhan MS , Eramian D , Shen MY , et al Comparative protein structure modeling using Modeller . Current protocols in bioinformatics / editoral board, Baxevanis Andreas D [ et al ]. 2006 ;Chapter 5:Unit 5 6. https://10.1002/0471250953.bi0506s15 . . 18428767
52 Soltis PS , Marchant DB , Van de Peer Y , Soltis DE . Polyploidy and genome evolution in plants . Current opinion in genetics & development . 2015 ; 35 : 119 ? 25 . https://10.1016/j.gde.2015.11.003 . . 26656231
53 Soares DC , Barlow PN , Newbery HJ , Porteous DJ , Abbott CM . Structural models of human eEF1A1 and eEF1A2 reveal two distinct surface clusters of sequence variation and potential differences in phosphorylation . PLoS One . 2009 ; 4 ( 7 ): e6315 Epub 2009/07/29. 10.1371/journal.pone.0006315 . 19636410
54 Wang ZQ , Li GZ , Gong QQ , Li GX , Zheng SJ . OsTCTP, encoding a translationally controlled tumor protein, plays an important role in mercury tolerance in rice . BMC plant biology . 2015 ; 15 : 123 Epub 2015/05/21. 10.1186/s12870-015-0500-y . 25990386
55 Santa Brigida AB , dos Reis SP , Costa Cde N , Cardoso CM , Lima AM , de Souza CR . Molecular cloning and characterization of a cassava translationally controlled tumor protein gene potentially related to salt stress response . Mol Biol Rep . 2014 ; 41 ( 3 ): 1787 ? 97 . Epub 2014/01/15. 10.1007/s11033-014-3028-6 . 24413992
56 Kim YM , Kim S , Koo N , Shin AY , Yeom SI , Seo E , et al Genome analysis of Hibiscus syriacus provides insights of polyploidization and indeterminate flowering in woody plants . DNA Res . 2016 https://10.1093/dnares/dsw049 . . 28011721
57 Semon M , Wolfe KH . Consequences of genome duplication . Current opinion in genetics & development . 2007 ; 17 ( 6 ): 505 ? 12 . https://10.1016/j.gde.2007.09.007 . . 18006297
58 Toscano-Morales R , Xoconostle-Cazares B , Cabrera-Ponce JL , Hinojosa-Moya J , Ruiz-Salas JL , Galvan-Gordillo SV , et al AtTCTP2, an Arabidopsis thaliana homolog of Translationally Controlled Tumor Protein, enhances in vitro plant regeneration . Frontiers in plant science . 2015 ; 6 : 468 https://10.3389/fpls.2015.00468 . . 26191065
59 Rossi A , Kontarakis Z , Gerri C , Nolte H , Holper S , Kruger M , et al Genetic compensation induced by deleterious mutations but not gene knockdowns . Nature . 2015 ; 524 ( 7564 ): 230 ? 3 . https://10.1038/nature14580 . . 26168398
60 Fontana P , Bindewald E , Toppo S , Velasco R , Valle G , Tosatto SC . The SSEA server for protein secondary structure alignment . Bioinformatics . 2005 ; 21 ( 3 ): 393 ? 5 . https://10.1093/bioinformatics/bti013 . . 15347578
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