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Post-transcriptional control of executioner caspases by RNA-binding proteins

机译:RNA结合蛋白对execution子手胱天蛋白酶的转录后控制

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摘要

Caspases are key components of apoptotic pathways. Regulation of caspases occurs at several levels, including transcription, proteolytic processing, inhibition of enzymatic function, and protein degradation. In contrast, little is known about the extent of post-transcriptional control of caspases. Here, we describe four conserved RNA-binding proteins (RBPs)—PUF-8, MEX-3, GLD-1, and CGH-1—that sequentially repress the CED-3 caspase in distinct regions of the Caenorhabditis elegans germline. We demonstrate that GLD-1 represses ced-3 mRNA translation via two binding sites in its 3′ untranslated region (UTR), thereby ensuring a dual control of unwanted cell death: at the level of p53/CEP-1 and at the executioner caspase level. Moreover, we identified seven RBPs that regulate human caspase-3 expression and/or activation, including human PUF-8, GLD-1, and CGH-1 homologs PUM1, QKI, and DDX6. Given the presence of unusually long executioner caspase 3′ UTRs in many metazoans, translational control of executioner caspases by RBPs might be a strategy used widely across the animal kingdom to control apoptosis.
机译:胱天蛋白酶是细胞凋亡途径的关键组成部分。半胱天冬酶的调节发生在几个水平,包括转录,蛋白水解过程,酶功能的抑制和蛋白质降解。相反,对胱天蛋白酶的转录后控制程度知之甚少。在这里,我们描述了四个保守的RNA结合蛋白(RBP)-PUF-8,MEX-3,GLD-1和CGH-1,它们在秀丽隐杆线虫种系的不同区域依次抑制CED-3半胱天冬酶。我们证明,GLD-1通过其3'非翻译区(UTR)中的两个结合位点来抑制ced-3 mRNA的翻译,从而确保了对有害细胞死亡的双重控制:在p53 / CEP-1和处决半胱天冬酶的水平水平。此外,我们鉴定了七种调节人caspase-3表达和/或激活的RBP,包括人PUF-8,GLD-1和CGH-1同源物PUM1,QKI和DDX6。鉴于在许多后生动物中存在异常长的execution子手半胱天冬酶3'UTRs,RBP对execution子手半胱天冬酶的翻译控制可能是在整个动物界广泛用于控制细胞凋亡的策略。

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