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Prostate Apoptosis Response 4 (Par-4) a Novel Substrate of Caspase-3 during Apoptosis Activation

机译:前列腺细胞凋亡反应4(Par-4)细胞凋亡激活过程中新型的Caspase-3底物

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摘要

Prostate apoptosis response 4 (Par-4) is a ubiquitously expressed proapoptotic tumor suppressor protein. Here, we show for the first time, that Par-4 is a novel substrate of caspase-3 during apoptosis. We found that Par-4 is cleaved during cisplatin-induced apoptosis in human normal and cancer cell lines. Par-4 cleavage generates a C-terminal fragment of ∼25 kDa, and the cleavage of Par-4 is completely inhibited by a caspase-3 inhibitor, suggesting that caspase-3 is directly involved in the cleavage of Par-4. Caspase-3-deficient MCF-7 cells do not show Par-4 cleavage in response to cisplatin treatment, and restoration of caspase-3 in MCF-7 cells produces a decrease in Par-4 levels, with the appearance of a cleaved fragment. Additionally, knockdown of Par-4 reduces caspase-3 activation and apoptosis induction. Site-directed mutagenesis reveals that Par-4 cleavage by caspase-3 occurs at an unconventional site, EEPD131↓G. Interestingly, overexpression of wild-type Par-4 but not the Par-4 D131A mutant sensitizes cells to cisplatin-induced apoptosis. Upon caspase-3 cleavage, the cleaved fragment of Par-4 accumulates in the nucleus and displays increased apoptotic activity. Overexpression of the cleaved fragment of Par-4 inhibits IκBα phosphorylation and blocks NF-κB nuclear translocation. We have identified a novel specific caspase-3 cleavage site in Par-4, and the cleaved fragment of Par-4 retains proapoptotic activity.
机译:前列腺细胞凋亡反应4(Par-4)是一种普遍表达的促凋亡肿瘤抑制蛋白。在这里,我们首次表明,Par-4是凋亡过程中caspase-3的新型底物。我们发现Par-4在人正常细胞和癌细胞系中由顺铂诱导的凋亡过程中被裂解。 Par-4的切割产生一个约25 kDa的C端片段,而caspase-3抑制剂则完全抑制了Par-4的切割,这表明caspase-3直接参与了Par-4的切割。缺乏Caspase-3的MCF-7细胞未显示对顺铂治疗的Par-4裂解,并且MCF-7细胞中caspase-3的还原导致Par-4水平降低,并出现裂解的片段。另外,Par-4的敲低可降低caspase-3的激活和凋亡诱导。定点诱变表明,caspase-3裂解Par-4发生在一个非常规位点EEPD 131 ↓G。有趣的是,野生型Par-4而不是Par-4 D131A突变体的过表达使细胞对顺铂诱导的细胞凋亡敏感。在半胱天冬酶3裂解后,Par-4的裂解片段在细胞核中积累并显示出增加的凋亡活性。 Par-4裂解片段的过表达抑制IκBα磷酸化并阻断NF-κB核易位。我们已经确定了Par-4中的新型特定caspase-3切割位点,并且Par-4的切割片段保留了促凋亡活性。

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