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The yeast antiviral proteins Ski2p, Ski3p, and Ski8p exist as a complex in vivo.

机译:酵母抗病毒蛋白Ski2p,Ski3p和Ski8p在体内以复合物形式存在。

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The yeast superkiller (SKI) genes were originally identified from mutations allowing increased production of killer toxin encoded by M "killer" virus, a satellite of the dsRNA virus L-A. XRN1 (SKI1) encodes a cytoplasmic 5'-exoribonuclease responsible for the majority of cytoplasmic RNA turnover, whereas SKI2, SKI3, and SKI8 are required for normal 3'-degradation of mRNA and for repression of translation of poly(A) minus RNA. Ski2p is a putative RNA helicase, Ski3p is a tetratricopeptide repeat (TPR) protein, and Ski8p contains five WD-40 (beta-transducin) repeats. An xrn1 mutation in combination with a ski2, ski3, or ski8 mutation is lethal, suggesting redundancy of function. Using functional epitope-tagged Ski2, Ski3, and Ski8 proteins, we show that Ski2p, Ski3p, and Ski8p can be coimmunoprecipitated as an apparent heterotrimeric complex. With epitope-tagged Ski2p, there was a 1:1:1 stoichiometry of the proteins in the complex. Ski2p did not associate with Ski3p in the absence of Ski8p, nor did Ski2p associate with Ski8p in the absence of Ski3p. However, the Ski3p/Ski8p interaction did not require Ski2p. In addition, ski6-2 or ski4-1 mutations or deletion of SKI7 did not affect complex formation. The identification of a complex composed of Ski2p, Ski3p, and Ski8p explains previous results showing phenotypic similarity between mutations in SKI2, SKI3, and SKI8. Indirect immunofluorescence of Ski3p and subcellular fractionation of Ski2p and Ski3p suggest that Ski2p and Ski3p are cytoplasmic. These data support the idea that Ski2p, Ski3p, and Ski8p function in the cytoplasm in a 3'-mRNA degradation pathway.
机译:酵母超级杀手(SKI)基因最初是从突变中鉴定的,该突变允许增加由dsRNA病毒L-A的卫星“杀手”病毒编码的杀手毒素的产生。 XRN1(SKI1)编码负责大多数细胞质RNA周转的细胞质5'-外切核糖核酸酶,而SKI2,SKI3和SKI8是正常的mRNA 3'-降解和抑制poly(A)减去RNA的翻译所必需的。 Ski2p是推定的RNA解旋酶,Ski3p是四肽重复序列(TPR)蛋白,Ski8p包含五个WD-40(β-转导蛋白)重复序列。 xrn1突变与ski2,ski3或ski8突变结合使用具有致命性,表明功能重复。使用功能性表位标记的Ski2,Ski3和Ski8蛋白,我们显示Ski2p,Ski3p和Ski8p可以被共免疫沉淀为明显的异源三聚体复合物。带有表位标记的Ski2p,复合物中蛋白质的化学计量比为1:1:1。在没有Ski8p的情况下,Ski2p不会与Ski3p关联,在没有Ski3p的情况下,Ski2p也不会与Ski8p关联。但是,Ski3p / Ski8p交互不需要Ski2p。另外,ski6-2或ski4-1突变或SKI7的缺失不影响复合物的形成。对由Ski2p,Ski3p和Ski8p组成的复合体的识别说明了先前的结果,这些结果显示了SKI2,SKI3和SKI8中的突变之间存在表型相似性。 Ski3p的间接免疫荧光以及Ski2p和Ski3p的亚细胞分级表明,Ski2p和Ski3p具有细胞质。这些数据支持Ski2p,Ski3p和Ski8p在3'-mRNA降解途径的细胞质中起作用的想法。

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