首页> 美国卫生研究院文献>PLoS Genetics >RSR-2 the Caenorhabditis elegans Ortholog of Human Spliceosomal Component SRm300/SRRM2 Regulates Development by Influencing the Transcriptional Machinery
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RSR-2 the Caenorhabditis elegans Ortholog of Human Spliceosomal Component SRm300/SRRM2 Regulates Development by Influencing the Transcriptional Machinery

机译:RSR-2秀丽隐杆线虫人类剪接体成分SRm300 / SRRM2的直系同源物通过影响转录机制来调节发育。

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摘要

Protein components of the spliceosome are highly conserved in eukaryotes and can influence several steps of the gene expression process. RSR-2, the Caenorhabditis elegans ortholog of the human spliceosomal protein SRm300/SRRM2, is essential for viability, in contrast to the yeast ortholog Cwc21p. We took advantage of mutants and RNA interference (RNAi) to study rsr-2 functions in C. elegans, and through genetic epistasis analysis found that rsr-2 is within the germline sex determination pathway. Intriguingly, transcriptome analyses of rsr-2(RNAi) animals did not reveal appreciable splicing defects but instead a slight global decrease in transcript levels. We further investigated this effect in transcription and observed that RSR-2 colocalizes with DNA in germline nuclei and coprecipitates with chromatin, displaying a ChIP-Seq profile similar to that obtained for the RNA Polymerase II (RNAPII). Consistent with a novel transcription function we demonstrate that the recruitment of RSR-2 to chromatin is splicing-independent and that RSR-2 interacts with RNAPII and affects RNAPII phosphorylation states. Proteomic analyses identified proteins associated with RSR-2 that are involved in different gene expression steps, including RNA metabolism and transcription with PRP-8 and PRP-19 being the strongest interacting partners. PRP-8 is a core component of the spliceosome and PRP-19 is the core component of the PRP19 complex, which interacts with RNAPII and is necessary for full transcriptional activity. Taken together, our study proposes that RSR-2 is a multifunctional protein whose role in transcription influences C. elegans development.
机译:剪接体的蛋白质成分在真核生物中高度保守,并且可以影响基因表达过程的几个步骤。 RSR-2是人剪接体蛋白SRm300 / SRRM2的秀丽隐杆线虫直系同源物,与酵母直系同源物Cwc21p相比,它对于生存能力至关重要。我们利用突变体和RNA干扰(RNAi)研究秀丽隐杆线虫的rsr-2功能,并通过遗传上位分析发现rsr-2在种系性别决定途径内。有趣的是,对rsr-2(RNAi)动物进行的转录组分析未发现明显的剪接缺陷,但转录水平总体略有下降。我们进一步研究了转录中的这种作用,并观察到RSR-2与DNA在种系核中共定位并与染色质共沉淀,显示的ChIP-Seq图谱与RNA聚合酶II(RNAPII)相似。与新颖的转录功能一致,我们证明RSR-2募集到染色质是非剪接独立的,并且RSR-2与RNAPII相互作用并影响RNAPII的磷酸化状态。蛋白质组学分析确定了与RSR-2相关的蛋白质,它们参与不同的基因表达步骤,包括RNA代谢和转录,其中PRP-8和PRP-19是最强的相互作用伴侣。 PRP-8是剪接体的核心组件,PRP-19是PRP19复合体的核心组件,该复合体与RNAPII相互作用,是完整转录活性所必需的。综上所述,我们的研究提出RSR-2是一种多功能蛋白,其在转录中的作用会影响秀丽隐杆线虫的发育。

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