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Mutations in the C-Terminal Loop of the Nucleocapsid Protein Affect Vesicular Stomatitis Virus RNA Replication and Transcription Differentially

机译:核衣壳蛋白C末端环中的突变影响水泡性口炎病毒RNA复制和转录的差异。

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摘要

The 2.9-Å structure of the vesicular stomatitis virus nucleocapsid (N) protein bound to RNA shows the RNA to be tightly sequestered between the two lobes of the N protein. Domain movement of the lobes of the N protein has been postulated to facilitate polymerase access to the RNA template. We investigated the roles of individual amino acid residues in the C-terminal loop, involved in long-range interactions between N protein monomers, in forming functional ribonucleoprotein (RNP) templates. The effects of specific N protein mutations on its expression, interaction with the phosphoprotein, and formation of RNP templates that supported viral RNA replication and transcription were examined. Mutations introduced into the C-terminal loop, predicted to break contact with other residues in the loop, caused up to 10-fold increases in RNA replication without an equivalent stimulation of transcription. Mutation F348A, predicted to break contact between the C-terminal loop and the N-terminal arm, formed templates that supported wild-type levels of RNA replication but almost no transcription. These data show that mutations in the C-terminal loop of the N protein can disparately affect RNA replication and transcription, indicating that the N protein plays a role in modulating RNP template function beyond its structural role in RNA encapsidation.
机译:与RNA结合的水疱性口炎病毒核衣壳(N)蛋白的2.9-Å结构表明RNA被紧密隔离在N蛋白的两个叶之间。推测N蛋白叶的结构域移动有助于聚合酶接近RNA模板。我们调查了C末端环中的单个氨基酸残基的作用,参与了N蛋白单体之间的远程相互作用,形成了功能性核糖核蛋白(RNP)模板。研究了特定N蛋白突变对其表达,与磷蛋白的相互作用以及支持病毒RNA复制和转录的RNP模板形成的影响。引入C末端环的突变预计会破坏与该环中其他残基的接触,从而导致RNA复制最多增加10倍,而不会产生等同的转录刺激。预测突变F348A会破坏C末端环和N末端臂之间的接触,从而形成了模板,该模板支持RNA复制的野生型水平,但几乎没有转录。这些数据表明,N蛋白C末端环中的突变可以不同地影响RNA复制和转录,表明N蛋白在调节RNP模板功能中的作用超出了其在RNA衣壳化过程中的结构作用。

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