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PMID: 19759058 已发表 · ppublish 英语

Proteome-wide substrate analysis indicates substrate exclusion as a mechanism to generate caspase-7 versus caspase-3 specificity.

Molecular & cellular proteomics : MCP ·第 8 卷 ·第 12 期 ·2010-02-22

Demon Dieter, Van Damme Petra, Vanden Berghe Tom, Deceuninck Annelies, Van Durme Joost, Verspurten Jelle, Helsens Kenny, Impens Francis, Wejda Magdalena, Schymkowitz Joost, Rousseau Frederic, Madder Annemieke, Vandekerckhove Joël, Declercq Wim, Gevaert Kris, Vandenabeele Peter

摘要

Caspase-3 and -7 are considered functionally redundant proteases with similar proteolytic specificities. We performed a proteome-wide screen on a mouse macrophage lysate using the N-terminal combined fractional diagonal chromatography technology and identified 46 shared, three caspase-3-specific, and six caspase-7-specific cleavage sites. Further analysis of these cleavage sites and substitution mutation experiments revealed that for certain cleavage sites a lysine at the P5 position contributes to the discrimination between caspase-7 and -3 specificity. One of the caspase-7-specific substrates, the 40 S ribosomal protein S18, was studied in detail. The RPS18-derived P6-P5' undecapeptide retained complete specificity for caspase-7. The corresponding P6-P1 hexapeptide still displayed caspase-7 preference but lost strict specificity, suggesting that P' residues are additionally required for caspase-7-specific cleavage. Analysis of truncated peptide mutants revealed that in the case of RPS18 the P4-P1 residues constitute the core cleavage site but that P6, P5, P2', and P3' residues critically contribute to caspase-7 specificity. Interestingly, specific cleavage by caspase-7 relies on excluding recognition by caspase-3 and not on increasing binding for caspase-7.

文献信息
期刊
Molecular & cellular proteomics : MCP
期刊简称
Mol Cell Proteomics
发表日期
2010-02-22
收录日期
2009-12-07
更新日期
2014-12-07
语言
英语
国家/地区
United States
NLM ID
101125647
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