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Post-Transcriptional Regulation by Poly(ADP-ribosyl)ation of the RNA-Binding Proteins

机译:RNA结合蛋白的聚(ADP-核糖基)转录后调节。

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Gene expression is intricately regulated at the post-transcriptional level by RNA-binding proteins (RBPs) via their interactions with pre-messenger RNA (pre-mRNA) and mRNA during development. However, very little is known about the mechanism regulating RBP activities in RNA metabolism. During the past few years, a large body of evidence has suggested that many RBPs, such as heterogeneous nuclear ribonucleoproteins (hnRNPs), undergo post-translational modification through poly(ADP-ribosyl)ation to modulate RNA processing, including splicing, polyadenylation, translation, miRNA biogenesis and rRNA processing. Accordingly, RBP poly(ADP-ribosyl)ation has been shown to be involved in stress responses, stem cell differentiation and retinal morphogenesis. Here, we summarize recent advances in understanding the biological roles of RBP poly(ADP-ribosyl)ation, as controlled by Poly(ADP-ribose) Polymerases (PARPs) and Poly(ADP-ribose) Glycohydrolase (PARG). In addition, we discuss the potential of PARP and PARG inhibitors for the treatment of RBP-related human diseases, including cancer and neurodegenerative disorders.
机译:RNA结合蛋白(RBP)通过在发育过程中与信使前RNA(pre-mRNA)和mRNA相互作用,在转录后水平上对基因表达进行复杂的调控。然而,关于调节RNA代谢中RBP活性的机制知之甚少。在过去的几年中,大量证据表明,许多RBP(例如异质核糖核蛋白(hnRNPs))通过聚(ADP-核糖基)化进行翻译后修饰,以调节RNA加工,包括剪接,聚腺苷酸化,翻译。 ,miRNA生物发生和rRNA加工。因此,已显示RBP聚(ADP-核糖基)化参与应激反应,干细胞分化和视网膜形态发生。在这里,我们总结了理解RBP聚(ADP-核糖)聚合酶(PARPs)和聚(ADP-核糖)糖水解酶(PARG)控制的RBP聚(ADP-核糖基)的生物学作用的最新进展。此外,我们讨论了PARP和PARG抑制剂在治疗与RBP相关的人类疾病(包括癌症和神经退行性疾病)中的潜力。

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