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Role of the Hypervariable Hinge Region of Phosphoprotein P of Vesicular Stomatitis Virus in Viral RNA Synthesis and Assembly of Infectious Virus Particles

机译:磷酸化蛋白p的高变铰链区的作用 病毒RNa合成中的水泡性口炎病毒 传染性病毒颗粒的组装

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摘要

The phosphoprotein (P protein) of vesicular stomatitis virus (VSV) is an essential subunit of the viral RNAdependent RNA polymerase and has multiple functions residing in its different domains. In the present study, we examined the role of the hypervariable hinge region of P protein in viral RNA synthesis and recovery of infectious VSV by using transposon-mediated insertion mutagenesis and deletion mutagenesis. We observed that insertions of 19-amino-acid linker sequences at various positions within this region affected replication and transcription functions of the P protein to various degrees. Interestingly, one insertion mutant was completely defective in both transcription and replication. Using a series of deletion mutants spanning the hinge region of the protein, we observed that amino acid residues 201 through 220 are required for the activity of P protein in both replication and transcription. Neither insertion nor deletion had any effect on the interaction of P protein with N or L proteins. Infectious VSVs with a deletion in the hinge region possessed retarded growth characteristics and exhibited small-plaque morphology. Interestingly, VSV containing one P protein deletion mutant (P∆7, with amino acids 141 through 200 deleted), which possessed significant levels of replication and transcription activity, could be amplified only by passage in cells expressing the wild-type P protein. We conclude that the hypervariable hinge region of the P protein plays an important role in viral RNA synthesis. Furthermore, our results provide a previously unidentified function for the P protein: it plays a critical role in the assembly of infectious VSV.
机译:水泡性口炎病毒(VSV)的磷蛋白(P蛋白)是病毒依赖RNA的RNA聚合酶的重要亚基,在其不同结构域中具有多种功能。在本研究中,我们通过转座子介导的插入诱变和缺失诱变,研究了P蛋白超变铰链区在病毒RNA合成和感染性VSV恢复中的作用。我们观察到在该区域内各个位置插入19个氨基酸的接头序列会在不同程度上影响P蛋白的复制和转录功能。有趣的是,一个插入突变体在转录和复制上都是完全缺陷的。使用一系列跨越蛋白质铰链区的缺失突变体,我们观察到氨基酸残基201至220是复制和转录过程中P蛋白活性所必需的。插入或缺失均不影响P蛋白与N或L蛋白的相互作用。具有在铰链区中缺失的传染性VSV具有延迟的生长特性并表现出小斑块形态。有趣的是,含有一个P蛋白缺失突变体(P∆7,具有141至200个氨基酸缺失)的VSV具有显着水平的复制和转录活性,只能通过在表达野生型P蛋白的细胞中传递来扩增。我们得出结论,P蛋白的高变铰链区在病毒RNA合成中起重要作用。此外,我们的结果为P蛋白提供了以前无法确定的功能:它在感染性VSV的组装中起关键作用。

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