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Function of the Ski4p (Csl4p) and Ski7p Proteins in 3′-to-5′ Degradation of mRNA

机译:Ski4p(Csl4p)和Ski7p蛋白在3至5mRNA降解中的功能

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摘要

One of two general pathways of mRNA decay in the yeast Saccharomyces cerevisiae occurs by deadenylation followed by 3′-to-5′ degradation of the mRNA body. Previous results have shown that this degradation requires components of the exosome and the Ski2p, Ski3p, and Ski8p proteins, which were originally identified due to their superkiller phenotype. In this work, we demonstrate that deletion of the SKI7 gene, which encodes a putative GTPase, also causes a defect in 3′-to-5′ degradation of mRNA. Deletion of SKI7, like deletion of SKI2, SKI3, or SKI8, does not affect various RNA-processing reactions of the exosome. In addition, we show that a mutation in the SKI4 gene also causes a defect in 3′-to-5′ mRNA degradation. We show that the SKI4 gene is identical to the CSL4 gene, which encodes a core component of the exosome. Interestingly, the ski4-1 allele contains a point mutation resulting in a mutation in the putative RNA binding domain of the Csl4p protein. This point mutation strongly affects mRNA degradation without affecting exosome function in rRNA or snRNA processing, 5′ externally transcribed spacer (ETS) degradation, or viability. In contrast, the csl4-1 allele of the same gene affects rRNA processing but not 3′-to-5′ mRNA degradation. We identify csl4-1 as resulting from a partial-loss-of-function mutation in the promoter of the CSL4 gene. These data indicate that the distinct functions of the exosome can be separated genetically and suggest that the RNA binding domain of Csl4p may have a specific function in mRNA degradation.
机译:酵母酿酒酵母中两个mRNA衰变的一般途径之一是通过腺苷酸化,然后是mRNA主体的3'至5'降解而发生的。先前的结果表明,这种降解需要外泌体以及Ski2p,Ski3p和Ski8p蛋白的成分,这些成分最初是由于其超级杀手表型而被鉴定出来的。在这项工作中,我们证明SKI7基因的缺失,它编码一个假定的GTPase,也会在mRNA的3'至5'降解中引起缺陷。与删除SKI2,SKI3或SKI8一样,删除SKI7不会影响外泌体的各种RNA加工反应。此外,我们表明,SKI4基因中的突变也导致3'至5'mRNA降解的缺陷。我们表明,SKI4基因与CSL4基因相同,后者编码外泌体的核心成分。有趣的是,ski4-1等位基因包含一个点突变,该突变导致Csl4p蛋白的假定RNA结合结构域发生突变。该点突变强烈影响mRNA降解,而不影响rRNA或snRNA加工中的外来体功能,5'外部转录间隔子(ETS)降解或生存力。相反,同一基因的csl4-1等位基因影响rRNA加工,但不影响3'至5'mRNA的降解。我们确定csl4-1是由CSL4基因启动子中的部分功能缺失突变引起的。这些数据表明,外泌体的不同功能可以通过基因分离,并暗示Csl4p的RNA结合结构域可能在mRNA降解中具有特定功能。

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