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RNase R mutants elucidate the catalysis of structured RNA: RNA-binding domains select the RNAs targeted for degradation

机译:RNase R突变体阐明了结构化RNA的催化作用:RNA结合结构域选择靶向降解的RNA

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pThe RNase II superfamily is a ubiquitous family of exoribonucleases that are essential for RNA metabolism. RNase II and RNase R degrade RNA in the 3′→5′ direction in a processive and sequence-independent manner. However, although RNase R is capable of degrading highly structured RNAs, the RNase II activity is impaired by the presence of secondary structures. RNase II and RNase R share structural properties and have a similar modular domain organization. The eukaryotic RNase II homologue, Rrp44/Dis3, is the catalytic subunit of the exosome, one of the most important protein complexes involved in the maintenance of the correct levels of cellular RNAs. In the present study, we constructed truncated RNase II and RNase R proteins and point mutants and characterized them regarding their exoribonucleolytic activity and RNA-binding ability. We report that Aspsup280/sup is crucial for RNase R activity without affecting RNA binding. When Tyrsup324/sup was changed to alanine, the final product changed from 2 to 5 nt in length, showing that this residue is responsible for setting the end-product. We have shown that the RNB domain of RNase II has catalytic activity. The most striking result is that the RNase R RNB domain itself degrades double-stranded substrates even in the absence of a 3′-overhang. Moreover, we have demonstrated for the first time that the substrate recognition of RNase R depends on the RNA-binding domains that target the degradation of RNAs that are ‘tagged’ by a 3′-tail. These results can have important implications for the study of poly(A)-dependent RNA degradation mechanisms./p
机译:> RNase II超家族是核糖核酸外切核糖核酸的一个普遍存在的家族。 RNase II和RNase R以3'→5'方向降解且顺序独立地降解RNA。但是,尽管RNase R能够降解高度结构化的RNA,但是RNase II的活性会因二级结构的存在而受损。 RNase II和RNase R共享结构特性,并具有类似的模块化结构域组织。真核细胞RNase II同源物Rrp44 / Dis3是外泌体的催化亚基,外泌体是最重要的蛋白质复合物之一,参与维持细胞RNA的正确水平。在本研究中,我们构建了截短的RNase II和RNase R蛋白和点突变体,并对其核糖核酸外切核酶活性和RNA结合能力进行了表征。我们报告说,Asp 280 对于RNase R活性至关重要,而不会影响RNA结合。当Tyr 324 更改为丙氨酸时,最终产物的长度从2变为5nt,表明该残基负责最终产物的形成。我们已经表明,RNase II的RNB结构域具有催化活性。最惊人的结果是,即使没有3'突出端,RNase R RNB结构域本身也会降解双链底物。此外,我们首次证明了RNase R的底物识别取决于靶向3'尾部“标记”的RNA降解的RNA结合域。这些结果可能对依赖poly(A)的RNA降解机制的研究具有重要意义。

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