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PMID: 25088050 已发表 · ppublish 英语

SKIP and BIR-1/Survivin have potential to integrate proteome status with gene expression.

Journal of proteomics ·第 110 卷 ·2015-07-29

Kostrouch David, Kostrouchová Markéta, Yilma Petr, Chughtai Ahmed Ali, Novotný Jan Philipp, Novák Petr, Kostrouchová Veronika, Kostrouchová Marta, Kostrouch Zdeněk

摘要

SKIP and BIR are evolutionarily conserved proteins; SKIP (SKP-1) is a known transcription and splicing cofactor while BIR-1/Survivin regulates cell division, gene expression and development. Their loss of function induces overlapping developmental phenotypes. We searched for SKP-1 and BIR-1 interaction on protein level using yeast two-hybrid screens and identified partially overlapping categories of proteins as SKIP-1 and BIR-1 interactors. The interacting proteins included ribosomal proteins, transcription factors, translation factors and cytoskeletal and motor proteins suggesting involvement in multiple protein complexes. To visualize the effect of BIR-1 on the proteome in Caenorhabditis elegans we induced a short time pulse BIR-1 overexpression in synchronized L1 larvae. This led to a dramatic alteration of the whole proteome pattern indicating that BIR-1 alone has the capacity to alter the chromatographic profile of many target proteins including proteins found to be interactors in yeast two hybrid screens. The results were validated for ribosomal proteins RPS3 and RPL5, non-muscle myosin and TAC-1, a transcription cofactor and a centrosome associated protein. Together, these results suggest that SKP-1 and BIR-1 are multifunctional proteins that form multiple protein complexes in both shared and distinct pathways and have the potential to connect proteome signals with the regulation of gene expression.,The genomic organization of the genes encoding BIR-1 and SKIP (SKP-1) in C. elegans have suggested that these two factors, each evolutionarily conserved, have related functions. However, these functional connections have remained elusive and underappreciated in light of limited information from C. elegans and other biological systems. Our results provide further evidence for a functional link between these two factors and suggest they may transmit proteome signals towards the regulation of gene expression.

关键词
BIR-1 Gene expression Proteome Ribosomal stress SKIP Survivin
文献信息
期刊
Journal of proteomics
期刊简称
J Proteomics
发表日期
2015-07-29
收录日期
2014-12-02
更新日期
2016-05-18
语言
英语
国家/地区
Netherlands
NLM ID
101475056
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