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Air proteins control differential TRAMP substrate specificity for nuclear RNA surveillance

机译:空气蛋白控制不同的TRAMP底物特异性以进行核RNA监测

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RNA surveillance systems function at critical steps during the formation and function of RNA molecules in all organisms. The RNA exosome plays a central role in RNA surveillance by processing and degrading RNA molecules in the nucleus and cytoplasm of eukaryotic cells. The exosome functions as a complex of proteins composed of a nine-member core and two ribonucleases. The identity of the molecular determinants of exosome RNA substrate specificity remains an important unsolved aspect of RNA surveillance. In the nucleus of Saccharomyces cerevisiae, TRAMP complexes recognize and polyadenylate RNAs, which enhances RNA degradation by the exosome and may contribute to its specificity. TRAMPs contain either of two putative RNA-binding factors called Air proteins. Previous studies suggested that these proteins function interchangeably in targeting the poly(A)-polymerase activity of TRAMPs to RNAs. Experiments reported here show that the Air proteins govern separable functions. Phenotypic analysis and RNA deep-sequencing results from air mutants reveal specific requirements for each Air protein in the regulation of the levels of noncoding and coding RNAs. Loss of these regulatory functions results in specific metabolic and plasmid inheritance defects. These findings reveal differential functions for Air proteins in RNA metabolism and indicate that they control the substrate specificity of the RNA exosome.
机译:RNA监视系统在所有生物体中RNA分子的形成和功能过程中的关键步骤起作用。 RNA外来体通过加工和降解真核细胞核和细胞质中的RNA分子,在RNA监测中发挥核心作用。外泌体的功能是由九个成员核心和两个核糖核酸酶组成的蛋白质复合物。外泌体RNA底物特异性的分子决定因素的身份仍然是RNA监测的一个重要未解决的方面。在酿酒酵母的细胞核中,TRAMP复合物识别并聚腺苷酸化RNA,这会增强外泌体对RNA的降解,并可能有助于其特异性。 TRAMPs包含两个假定的RNA结合因子之一,即Air蛋白。先前的研究表明,这些蛋白质在将TRAMPs的poly(A)聚合酶活性靶向RNA方面具有互换功能。此处报道的实验表明,空气蛋白支配着可分离的功能。空气突变体的表型分析和RNA深度测序结果表明,每种空气蛋白在调节非编码RNA和编码RNA的水平方面都有特殊要求。这些调节功能的丧失导致特定的代谢和质粒遗传缺陷。这些发现揭示了空气蛋白质在RNA代谢中的不同功能,并表明它们控制RNA外泌体的底物特异性。

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