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呼肠孤病毒细胞附着蛋白C端球状头部的构象与功能分析

Conformational and functional analysis of the C-terminal globular head of the reovirus cell attachment protein.

作者信息

Duncan R, Horne D, Strong J E, Leone G, Pon R T, Yeung M C, Lee P W

机构信息

Department of Microbiology and Infectious Diseases, University of Calgary Health Sciences Centre, Alberta, Canada.

出版信息

Virology. 1991 Jun;182(2):810-9. doi: 10.1016/0042-6822(91)90622-i.

Abstract

We have been investigating structure-function relationships in the reovirus cell attachment protein sigma 1 using various deletion mutants and protease analysis. In the present study, a series of deletion mutants were constructed which lacked 90, 44, 30, 12, or 4 amino acids from the C-terminus of the 455-amino acid-long reovirus type 3 (T3) sigma 1 protein. The full-length and truncated sigma 1 proteins were expressed in an in vitro transcription/translation system and assayed for L cell binding activity. It was found that the removal of as few as four amino acids from the C-terminus drastically affected the cell binding function of the sigma 1 protein. The C-terminal-truncated proteins were further characterized using trypsin, chymotrypsin, and monoclonal and polyclonal antibodies. Our results indicated that the C-terminal portions of the mutant proteins were misfolded, leading to a loss in cell binding function. The N-terminal fibrous tail of the proteins was unaffected by the deletions as was sigma 1 oligomerization, further illustrating the discrete structural and functional roles of the N- and C-terminal domains of sigma 1. In an attempt to identify smaller, functional peptides, full-length sigma 1 expressed in vitro was digested with trypsin and subsequently with chymotrypsin under various conditions. The results clearly demonstrated the highly stable nature of the C-terminal globular head of sigma 1, even when separated from the N-terminal fibrous tail. We concluded that: (1) the C-terminal globular head of sigma 1 exists as a compact, protease-resistant oligomeric structure; (2) an intact C-terminus is required for proper head folding and generation of the conformationally dependent cell binding domain.

摘要

我们一直在利用各种缺失突变体和蛋白酶分析方法研究呼肠孤病毒细胞附着蛋白σ1的结构-功能关系。在本研究中,构建了一系列缺失突变体,这些突变体缺失了455个氨基酸长的呼肠孤病毒3型(T3)σ1蛋白C末端的90、44、30、12或4个氨基酸。全长和截短的σ1蛋白在体外转录/翻译系统中表达,并检测其与L细胞的结合活性。结果发现,从C末端去除少至四个氨基酸会极大地影响σ1蛋白的细胞结合功能。使用胰蛋白酶、胰凝乳蛋白酶以及单克隆和多克隆抗体对C末端截短的蛋白进行了进一步表征。我们的结果表明,突变蛋白的C末端部分发生错误折叠,导致细胞结合功能丧失。蛋白的N末端纤维状尾巴不受缺失的影响,σ1的寡聚化也不受影响,这进一步说明了σ1的N末端和C末端结构域具有不同的结构和功能作用。为了鉴定更小的功能性肽段,在各种条件下,用胰蛋白酶消化体外表达的全长σ1,随后再用胰凝乳蛋白酶消化。结果清楚地表明,即使与N末端纤维状尾巴分离,σ1的C末端球状头部也具有高度稳定的性质。我们得出以下结论:(1)σ1的C末端球状头部以紧密的、抗蛋白酶的寡聚结构形式存在;(2)完整的C末端是头部正确折叠和产生构象依赖性细胞结合结构域所必需的。

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