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成熟逆转录病毒衣壳组装过程中主要同源区域内保守疏水残基的关键作用。

Critical role of conserved hydrophobic residues within the major homology region in mature retroviral capsid assembly.

作者信息

Purdy John G, Flanagan John M, Ropson Ira J, Rennoll-Bankert Kristen E, Craven Rebecca C

机构信息

Department of Microbiology and Immunology, The Pennsylvania State University College of Medicine, 500 University Drive, Hershey, PA 17033, USA.

出版信息

J Virol. 2008 Jun;82(12):5951-61. doi: 10.1128/JVI.00214-08. Epub 2008 Apr 9.

Abstract

During retroviral maturation, the CA protein undergoes dramatic structural changes and establishes unique intermolecular interfaces in the mature capsid shell that are different from those that existed in the immature precursor. The most conserved region of CA, the major homology region (MHR), has been implicated in both immature and mature assembly, although the precise contribution of the MHR residues to each event has been largely undefined. To test the roles of specific MHR residues in mature capsid assembly, an in vitro system was developed that allowed for the first-time formation of Rous sarcoma virus CA into structures resembling authentic capsids. The ability of CA to assemble organized structures was destroyed by substitutions of two conserved hydrophobic MHR residues and restored by second-site suppressors, demonstrating that these MHR residues are required for the proper assembly of mature capsids in addition to any role that these amino acids may play in immature particle assembly. The defect caused by the MHR mutations was identified as an early step in the capsid assembly process. The results provide strong evidence for a model in which the hydrophobic residues of the MHR control a conformational reorganization of CA that is needed to initiate capsid assembly and suggest that the formation of an interdomain interaction occurs early during maturation.

摘要

在逆转录病毒成熟过程中,衣壳蛋白(CA)经历了显著的结构变化,并在成熟的衣壳壳层中建立了独特的分子间界面,这些界面与未成熟前体中存在的界面不同。CA最保守的区域,即主要同源区域(MHR),已被证明与未成熟和成熟组装过程都有关联,尽管MHR残基对每个过程的确切贡献在很大程度上仍不明确。为了测试特定MHR残基在成熟衣壳组装中的作用,开发了一种体外系统,该系统首次使劳氏肉瘤病毒CA形成类似于真实衣壳的结构。两个保守的疏水性MHR残基的替换破坏了CA组装有组织结构的能力,而第二位点抑制子则恢复了这种能力,这表明这些MHR残基除了在未成熟颗粒组装中可能发挥的任何作用外,对于成熟衣壳的正确组装也是必需的。MHR突变导致的缺陷被确定为衣壳组装过程中的早期步骤。这些结果为一个模型提供了有力证据,该模型认为MHR的疏水残基控制着CA的构象重排,这是启动衣壳组装所必需的,并且表明结构域间相互作用的形成在成熟过程早期就会发生。

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