Protein chimerism: Novel source of protein diversity in humans adds complexity to bottom-up proteomics

被引:9
作者
Casado-Vela, Juan [1 ]
Carlos Lacal, Juan [2 ]
Elortza, Felix [3 ]
机构
[1] CSIC, Ctr Nacl Biotecnol, Lab 115, Dpt Biol Mol & Celular, Madrid 28049, Spain
[2] Spanish Natl Res Council CSIC UAM, Translat Oncol Unit, Inst Invest Biomed Alberto Sols, Madrid, Spain
[3] ProteoRed ISCIII, Prote Platform, CIC BioGUNE, CIBERehd, Derio, Spain
关键词
Bcr-Abl; Biomedicine; Chimeric proteins; Chimerotypic peptides; Junction peptides; Protein diversity; FUSION GENES; BCR; TRANSCRIPTOME; BREAKPOINTS; INFERENCE; SEQUENCE; DATABASE; CANCER;
D O I
10.1002/pmic.201200371
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Three main molecular mechanisms are considered to contribute expanding the repertoire and diversity of proteins present in living organisms: first, at DNA level (gene polymorphisms and single nucleotide polymorphisms); second, at messenger RNA (pre-mRNA and mRNA) level including alternative splicing (also termed differential splicing or cis-splicing); finally, at the protein level mainly driven through PTM and specific proteolytic cleavages. Chimeric mRNAs constitute an alternative source of protein diversity, which can be generated either by chromosomal translocations or by trans-splicing events. The occurrence of chimeric mRNAs and proteins is a frequent event in cells from the immune system and cancer cells, mainly as a consequence of gene rearrangements. Recent reports support that chimeric proteins may also be expressed at low levels under normal physiological circumstances, thus, representing a novel source of protein diversity. Notably, recent publications demonstrate that chimeric protein products can be successfully identified through bottom-up proteomic analyses. Several questions remain unsolved, such as the physiological role and impact of such chimeric proteins or the potential occurrence of chimeric proteins in higher eukaryotic organisms different from humans. The occurrence of chimeric proteins certainly seems to be another unforeseen source of complexity for the proteome. It may be a process to take in mind not only when performing bottom-up proteomic analyses in cancer studies but also in general bottom-up proteomics experiments.
引用
收藏
页码:5 / 11
页数:7
相关论文
共 38 条
[1]   Transcription-mediated gene fusion in the human genome [J].
Akiva, P ;
Toporik, A ;
Edelheit, S ;
Peretz, Y ;
Diber, A ;
Shemesh, R ;
Novik, A ;
Sorek, R .
GENOME RESEARCH, 2006, 16 (01) :30-36
[2]   Investigating protein isoforms via proteomics: A feasibility study [J].
Blakeley, Paul ;
Siepen, Jennifer A. ;
Lawless, Craig ;
Hubbard, Simon J. .
PROTEOMICS, 2010, 10 (06) :1127-1140
[3]   Approaches for the study of cancer: towards the integration of genomics, proteomics and metabolomics [J].
Casado-Vela, Juan ;
Cebrian, Arancha ;
Teresa Gomez del Pulgar, Maria ;
Carlos Lacal, Juan .
CLINICAL & TRANSLATIONAL ONCOLOGY, 2011, 13 (09) :617-628
[4]  
Casado-Vela J, 2011, EXPERT REV PROTEOMIC, V8, P347, DOI [10.1586/EPR.11.26, 10.1586/epr.11.26]
[5]   Lights and shadows of proteomic technologies for the study of protein species including isoforms, splicing variants and protein post-translational modifications [J].
Casado-Vela, Juan ;
Cebrian, Arancha ;
Teresa Gomez del Pulgar, Maria ;
Sanchez-Lopez, Elsa ;
Vilaseca, Marta ;
Menchen, Laura ;
Diema, Claudia ;
Selles-Marchart, Susana ;
Jose Martinez-Esteso, Maria ;
Yubero, Noemi ;
Bru-Martinez, Roque ;
Caelos Lacal, Juan .
PROTEOMICS, 2011, 11 (04) :590-603
[6]   Overexpression of a secretory leukocyte protease inhibitor in human gastric cancer [J].
Cheng, Wan-Li ;
Wan, Chia-Siu ;
Huang, Ya-Hui ;
Liang, Ying ;
Lin, Paul Y. ;
Hsueh, Chuen ;
Wu, Yi-Chin ;
Chen, Wei-Jan ;
Yu, Chia-Jung ;
Lin, Sheue-Rong ;
Lin, Kwang-Huei .
INTERNATIONAL JOURNAL OF CANCER, 2008, 123 (08) :1787-1796
[7]   DECIPHER: Database of Chromosomal Imbalance and Phenotype in Humans Using Ensembl Resources [J].
Firth, Helen V. ;
Richards, Shola M. ;
Bevan, A. Paul ;
Clayton, Stephen ;
Corpas, Manuel ;
Rajan, Diana ;
Van Vooren, Steven ;
Moreau, Yves ;
Pettett, Roger M. ;
Carter, Nigel P. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2009, 84 (04) :524-533
[8]  
Frank AM, 2011, NAT METHODS, V8, P587, DOI [10.1038/NMETH.1609, 10.1038/nmeth.1609]
[9]   Chimeras taking shape: Potential functions of proteins encoded by chimeric RNA transcripts [J].
Frenkel-Morgenstern, Milana ;
Lacroix, Vincent ;
Ezkurdia, Iakes ;
Levin, Yishai ;
Gabashvili, Alexandra ;
Prilusky, Jaime ;
del Pozo, Angela ;
Tress, Michael ;
Johnson, Rory ;
Guigo, Roderic ;
Valencia, Alfonso .
GENOME RESEARCH, 2012, 22 (07) :1231-1242
[10]   Implications of chimaeric non-co-linear transcripts [J].
Gingeras, Thomas R. .
NATURE, 2009, 461 (7261) :206-211