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Identification of Evolutionarily Conserved Exons as Regulated Targets for the Splicing Activator Tra2β in Development

机译:进化保守的外显子作为剪接活化因子Tra2β调控目标的鉴定。

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摘要

Alternative splicing amplifies the information content of the genome, creating multiple mRNA isoforms from single genes. The evolutionarily conserved splicing activator Tra2β (Sfrs10) is essential for mouse embryogenesis and implicated in spermatogenesis. Here we find that Tra2β is up-regulated as the mitotic stem cell containing population of male germ cells differentiate into meiotic and post-meiotic cells. Using CLIP coupled to deep sequencing, we found that Tra2β binds a high frequency of exons and identified specific G/A rich motifs as frequent targets. Significantly, for the first time we have analysed the splicing effect of Sfrs10 depletion in vivo by generating a conditional neuronal-specific Sfrs10 knock-out mouse (Sfrs10fl/fl; Nestin-Cretg/+). This mouse has defects in brain development and allowed correlation of genuine physiologically Tra2β regulated exons. These belonged to a novel class which were longer than average size and importantly needed multiple cooperative Tra2β binding sites for efficient splicing activation, thus explaining the observed splicing defects in the knockout mice. Regulated exons included a cassette exon which produces a meiotic isoform of the Nasp histone chaperone that helps monitor DNA double-strand breaks. We also found a previously uncharacterised poison exon identifying a new pathway of feedback control between vertebrate Tra2 proteins. Both Nasp-T and the Tra2a poison exon are evolutionarily conserved, suggesting they might control fundamental developmental processes. Tra2β protein isoforms lacking the RRM were able to activate specific target exons indicating an additional functional role as a splicing co-activator. Significantly the N-terminal RS1 domain conserved between flies and humans was essential for the splicing activator function of Tra2β. Versions of Tra2β lacking this N-terminal RS1 domain potently repressed the same target exons activated by full-length Tra2β protein.
机译:选择性剪接扩增了基因组的信息内容,从单个基因产生了多个mRNA亚型。进化保守的剪接激活剂Tra2β(Sfrs10)对于小鼠胚胎发生至关重要,并与精子发生有关。在这里,我们发现Tra2β被上调,因为包含有丝分裂干细胞的雄性生殖细胞群体分化为减数分裂和减数分裂后的细胞。使用CLIP结合深度测序,我们发现Tra2β结合了高频率的外显子,并确定了富含G / A的特定基序作为常见靶标。重要的是,我们首次通过产生条件性神经元特异性Sfrs10基因敲除小鼠(Sfrs10 fl / fl ; Nestin-Cre tg / + )。这只老鼠的大脑发育有缺陷,并允许真正的生理Tra2β调节外显子相关。这些属于比平均大小更长的新颖类别,并且重要地需要多个合作的Tra2β结合位点以有效地进行剪接激活,从而解释了在敲除小鼠中观察到的剪接缺陷。受调控的外显子包括一个盒式外显子,该外盒可产生Nasp组蛋白伴侣的减数分裂同工型,有助于监测DNA双链断裂。我们还发现了以前未知的毒物外显子,它确定了脊椎动物Tra2蛋白之间反馈控制的新途径。 Nasp-T和Tra2a毒物外显子在进化上都是保守的,表明它们可能控制基本的发育过程。缺乏RRM的Tra2β蛋白同工型能够激活特定的目标外显子,表明其作为剪接共激活子具有额外的功能。值得注意的是,在果蝇和人类之间保守的N末端RS1结构域对于Tra2β的剪接激活功能是必不可少的。缺少此N末端RS1结构域的Tra2β版本有效地抑制了全长Tra2β蛋白激活的相同靶标外显子。

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