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钙蛋白酶介导的蛋白水解作用:对p53降解的可能作用。

Proteolysis by calpains: a possible contribution to degradation of p53.

作者信息

Pariat M, Carillo S, Molinari M, Salvat C, Debüssche L, Bracco L, Milner J, Piechaczyk M

机构信息

Institut de Génétique Moléculaire, UMR 9942, CNRS, Montpellier, France.

出版信息

Mol Cell Biol. 1997 May;17(5):2806-15. doi: 10.1128/MCB.17.5.2806.

DOI:10.1128/MCB.17.5.2806
PMID:9111352
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC232132/
Abstract

p53 is a short-lived transcription factor that is frequently mutated in tumor cells. Work by several laboratories has already shown that the ubiquitin-proteasome pathway can largely account for p53 destruction, at least under specific experimental conditions. We report here that, in vitro, wild-type p53 is a sensitive substrate for milli- and microcalpain, which are abundant and ubiquitous cytoplasmic proteases. Degradation was dependent on p53 protein conformation. Mutants of p53 with altered tertiary structure displayed a wide range of susceptibility to calpains, some of them being largely resistant to degradation and others being more sensitive. This result suggests that the different mutants tested here adopt slightly different conformations to which calpains are sensitive but that cannot be discriminated by using monoclonal antibodies such as PAb1620 and PAb240. Inhibition of calpains by using the physiological inhibitor calpastatin leads to an elevation of p53 steady-state levels in cells expressing wild-type p53. Conversely, activation of calpains by calcium ionophore led to a reduction of p53 in mammalian cells, and the effect was blocked by cell-permeant calpain inhibitors. Cotransfection of p53-null cell lines with p53 and calpastatin expression vectors resulted in an increase in p53-dependent transcription activity. Taken together, these data support the idea that calpains may also contribute to the regulation of wild-type p53 protein levels in vivo.

摘要

p53是一种寿命较短的转录因子,在肿瘤细胞中经常发生突变。多个实验室的研究已经表明,泛素-蛋白酶体途径在很大程度上可以解释p53的降解,至少在特定的实验条件下是这样。我们在此报告,在体外,野生型p53是毫微摩尔和微摩尔钙蛋白酶的敏感底物,这两种酶是丰富且普遍存在的细胞质蛋白酶。降解取决于p53的蛋白质构象。三级结构改变的p53突变体对钙蛋白酶表现出广泛的敏感性差异,其中一些对降解具有很大抗性,而另一些则更敏感。这一结果表明,此处测试的不同突变体采用了略有不同的构象,钙蛋白酶对这些构象敏感,但使用诸如PAb1620和PAb240等单克隆抗体无法区分。使用生理性抑制剂钙蛋白酶抑制蛋白可导致表达野生型p53的细胞中p53稳态水平升高。相反,钙离子载体激活钙蛋白酶会导致哺乳动物细胞中p53减少,且这种效应被细胞渗透性钙蛋白酶抑制剂阻断。将p53缺失细胞系与p53和钙蛋白酶抑制蛋白表达载体共转染导致p53依赖性转录活性增加。综上所述,这些数据支持钙蛋白酶也可能在体内参与调节野生型p53蛋白水平这一观点。

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