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豇豆褪绿斑驳病毒在体外进行共翻译解离时,病毒粒子肿胀并非必需。

Virion swelling is not required for cotranslational disassembly of cowpea chlorotic mottle virus in vitro.

作者信息

Albert F G, Fox J M, Young M J

机构信息

Department of Plant Pathology, Montana State University, Bozeman 59717, USA.

出版信息

J Virol. 1997 Jun;71(6):4296-9. doi: 10.1128/JVI.71.6.4296-4299.1997.

Abstract

The mechanism by which virions of cowpea chlorotic mottle virus (CCMV) disassemble and allow for translation of the virion RNA is not well understood. Previous models have suggested that virion swelling is required to expose the virion RNA for translation in a process referred to as cotranslational disassembly (M. Brisco, R. Hull, and T. M. A. Wilson, Virology 148:210-217, 1986; J. W. Roenhorst, J. W. M. van Lent, and B. J. M. Verduin, Virology 164:91-98, 1988; J. W. Roenhorst, J. M. Verduin, and R. W. Goldbach, Virology 168:138-146, 1989). Previous work in our laboratory has identified point mutations in the CCMV coat protein which result in virions with altered swelling characteristics (J. Fox, F. G. Albert, J. Speir, and M. J. Young, Virology 227:229-233, 1997; J. M. Fox, X. Zhao, J. A. Speir, and M. J. Young, Virology 222:115-122, 1996). The wild-type and mutant CCMV virions were used to correlate virion swelling with the ability of virion RNA to be translated in a cell-free wheat germ extract. Mutant virions unable to swell (cpK42R) are as infectious as wild-type virions in vivo, and the levels of translated encapsidated virion RNA are similar to those of wild-type virions in vitro. Mutant virions capable of swelling but not of disassembling in vitro (cpR26C) are noninfectious and have severely reduced levels of translation of the encapsidated virion RNA in vitro. These studies suggest that virion swelling is not required for the cotranslational disassembly of CCMV. Additionally, the results indicate that there is a pH-dependent structural transition in the virion, other than swelling, that results in the RNA's being exposed for translation in vitro. An alternative model suggesting that cotranslational disassembly of CCMV involves presentation of the virion RNA through the virion fivefold axis is proposed.

摘要

豇豆花叶病毒(CCMV)的病毒粒子拆解并使得病毒粒子RNA得以翻译的机制尚未完全明确。之前的模型表明,在一个被称为共翻译拆解的过程中,病毒粒子膨胀是使病毒粒子RNA得以暴露用于翻译所必需的(M. 布里斯科、R. 赫尔和T. M. A. 威尔逊,《病毒学》148:210 - 217,1986;J. W. 罗恩霍斯特、J. W. M. 范伦特和B. J. M. 韦尔杜因,《病毒学》164:91 - 98,1988;J. W. 罗恩霍斯特、J. M. 韦尔杜因和R. W. 戈德巴赫,《病毒学》168:138 - 146,1989)。我们实验室之前的工作已鉴定出CCMV外壳蛋白中的点突变,这些突变导致病毒粒子具有改变的膨胀特性(J. 福克斯、F. G. 艾伯特、J. 斯皮尔和M. J. 杨,《病毒学》227:229 - 233,1997;J. M. 福克斯、X. 赵、J. A. 斯皮尔和M. J. 杨,《病毒学》222:115 - 122,1996)。野生型和突变型CCMV病毒粒子被用于关联病毒粒子膨胀与病毒粒子RNA在无细胞小麦胚芽提取物中进行翻译的能力。无法膨胀的突变型病毒粒子(cpK42R)在体内与野生型病毒粒子一样具有感染性,并且在体外,被包裹的病毒粒子RNA的翻译水平与野生型病毒粒子相似。能够膨胀但在体外不能拆解的突变型病毒粒子(cpR26C)没有感染性,并且在体外,被包裹的病毒粒子RNA的翻译水平大幅降低。这些研究表明,CCMV的共翻译拆解并不需要病毒粒子膨胀。此外,结果表明,除了膨胀之外,病毒粒子中存在一种pH依赖性的结构转变,这种转变导致RNA在体外得以暴露用于翻译。本文提出了另一种模型,该模型认为CCMV的共翻译拆解涉及病毒粒子RNA通过病毒粒子的五重轴呈现。

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