首页> 美国卫生研究院文献>Journal of Virology >Vaccinia Virus Mutants with Alanine Substitutions in the Conserved G5R Gene Fail To Initiate Morphogenesis at the Nonpermissive Temperature
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Vaccinia Virus Mutants with Alanine Substitutions in the Conserved G5R Gene Fail To Initiate Morphogenesis at the Nonpermissive Temperature

机译:保守的G5R基因中具有丙氨酸取代的牛痘病毒突变体在非容许温度下无法启动形态发生。

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摘要

The initial characterization of the product of the vaccinia virus G5R gene, which is conserved in all poxviruses sequenced to date, is described. The G5 protein was detected in the core fraction of purified virions, and transcription and translation of the G5R open reading frame occurred early in infection, independently of DNA replication. Attempts to delete the G5R gene and isolate a replication-competent virus were unsuccessful, suggesting that G5R encodes an essential function. We engineered vaccinia virus mutants with clusters of charged amino acids changed to alanines and determined that several were unable to replicate at 40°C but grew well at 37°C. At the nonpermissive temperature, viral gene expression and DNA replication and processing were unperturbed. However, tyrosine phosphorylation and proteolytic cleavage of the A17 membrane protein and proteolytic cleavage of core proteins were inhibited at 40°C, suggesting an assembly defect. The cytoplasm of cells that had been infected at the nonpermissive temperature contained large granular areas devoid of cellular organelles or virus structures except for occasional short crescent-shaped membranes and electron-dense lacy structures. The temperature-sensitive phenotype of the G5R mutants closely resembled the phenotypes of vaccinia virus mutants carrying conditionally lethal F10R protein kinase and H5R mutations. F10, although required for phosphorylation of A17 and viral membrane formation, was synthesized by the G5R mutants under nonpermissive conditions. An intriguing possibility is that G5 participates in the formation of viral membranes, a poorly understood event in poxvirus assembly.
机译:描述了痘苗病毒G5R基因产物的初始特征,该产物在迄今为止已测序的所有痘病毒中均是保守的。在纯化的病毒体的核心部分中检测到G5蛋白,并且G5R开放阅读框的转录和翻译在感染的早期发生,与DNA复制无关。试图删除G5R基因并分离出具有复制能力的病毒的尝试均未成功,这表明G5R编码了一种基本功能。我们设计了牛痘病毒突变体,其中带电荷的氨基酸簇变成了丙氨酸,并确定其中一些在40°C下无法复制,但在37°C下生长良好。在非许可温度下,病毒基因表达以及DNA复制和加工不受干扰。但是,酪氨酸的磷酸化和A17膜蛋白的蛋白水解切割以及核心蛋白的蛋白水解切割在40°C时受到抑制,提示组装缺陷。在不容许的温度下被感染的细胞的胞质包含大颗粒区域,没有偶尔的新月形膜和电子致密的蕾丝结构,没有细胞器或病毒结构。 G5R突变体的温度敏感性表型与带有条件致死性F10R蛋白激酶和H5R突变的牛痘病毒突变体的表型非常相似。尽管F10是A17的磷酸化和病毒膜形成所必需的,但它是由G5R突变体在非许可条件下合成的。一个有趣的可能性是G5参与了病毒膜的形成,这在痘病毒装配中尚不为人所知。

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