Batsché Eric, Ameyar-Zazoua Maya
Institut Pasteur, Dpt Biologie du Développement et Cellules Souches, Unité de Régulation Epigénétique, 75015 Paris, France; URA2578, CNRS.
Wiley Interdiscip Rev RNA. 2015 Jan-Feb;6(1):141-56. doi: 10.1002/wrna.1264. Epub 2014 Sep 25.
Alternative splicing of precursor RNAs is an important process in multicellular species because it impacts several aspects of gene expression: from the increase of protein repertoire to the level of expression. A large body of evidences demonstrates that factors regulating chromatin and transcription impact the outcomes of alternative splicing. Argonaute (AGO) proteins were known to play key roles in the regulation of gene expression at the post-transcriptional level. More recently, their role in the nucleus of human somatic cells has emerged. Here, we will discuss some of the nuclear functions of AGO, with special emphasis on alternative splicing. The AGO-mediated modulation of alternative splicing is based on several properties of these proteins: their binding to transcripts on chromatin and their interactions with many proteins, especially histone tail-modifying enzymes, HP1γ and splicing factors. AGO proteins may favor a decrease in the RNA-polymerase II kinetics at actively transcribed genes leading to the modulation of alternative splicing decisions. They could also influence alternative splicing through their interaction with core components of the splicing machinery and several splicing factors. We will discuss the modes of AGO recruitment on chromatin at active genes. We suggest that long intragenic antisense transcripts (lincRNA) might be an important feature of genes containing splicing events regulated by AGO.
前体RNA的可变剪接是多细胞物种中的一个重要过程,因为它影响基因表达的多个方面:从蛋白质组的增加到表达水平。大量证据表明,调节染色质和转录的因子会影响可变剪接的结果。已知Argonaute(AGO)蛋白在转录后水平的基因表达调控中起关键作用。最近,它们在人类体细胞细胞核中的作用也逐渐显现。在这里,我们将讨论AGO的一些核功能,特别强调可变剪接。AGO介导的可变剪接调节基于这些蛋白的几个特性:它们与染色质上的转录本结合以及与许多蛋白质的相互作用,特别是组蛋白尾部修饰酶、HP1γ和剪接因子。AGO蛋白可能有利于降低活跃转录基因处的RNA聚合酶II动力学,从而导致可变剪接决定的调节。它们还可以通过与剪接机制的核心成分和几种剪接因子相互作用来影响可变剪接。我们将讨论AGO在活跃基因染色质上的招募模式。我们认为,长基因内反义转录本(lincRNA)可能是含有受AGO调节的剪接事件的基因的一个重要特征。