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呼肠孤病毒σ3蛋白与双链RNA结合的定点诱变分析

Site-directed mutagenic analysis of reovirus sigma 3 protein binding to dsRNA.

作者信息

Denzler K L, Jacobs B L

机构信息

Department of Microbiology, Arizona State University, Tempe 85287-2701.

出版信息

Virology. 1994 Oct;204(1):190-9. doi: 10.1006/viro.1994.1523.

Abstract

The S4 gene of reovirus encodes a double-stranded RNA-binding protein, sigma 3, that can inhibit activation of the interferon-induced dsRNA-dependent protein kinase, PKR. In this study, we attempted to localize the region of sigma 3 involved in dsRNA-binding by constructing deletion and point mutations, expressing the mutated proteins in COS cells, and testing the ability of the native mutated proteins to bind dsRNA-agarose. Transfection of S4 into COS cells resulted in expression of two forms of sigma 3, a full-length protein, and a protein containing a small truncation at the amino-terminal end. The truncation is likely due to a proteolytic event. Deletions of as few as 10 amino acids from the amino-terminal end of the protein or 10 amino acids from the carboxyl-terminal end of the protein resulted in loss of dsRNA-binding activity. A putative dsRNA-binding domain has previously been localized to an 85 amino acid region located between amino acids 234 and 297 (Miller, J. E., and Samuel, C. E., J. Virol. 66, 5347-5356 1992). Mutagenesis of basic residues located within two distinct motifs of this region showed that some basic residues are absolutely required for binding to dsRNA while others can be changed with little effect.

摘要

呼肠孤病毒的S4基因编码一种双链RNA结合蛋白σ3,它能够抑制干扰素诱导的双链RNA依赖性蛋白激酶PKR的激活。在本研究中,我们试图通过构建缺失突变和点突变、在COS细胞中表达突变蛋白以及检测天然突变蛋白与双链RNA琼脂糖结合的能力,来定位σ3中参与双链RNA结合的区域。将S4转染到COS细胞中导致两种形式的σ3表达,一种是全长蛋白,另一种是在氨基末端含有小截短的蛋白。这种截短可能是由于蛋白水解事件导致的。从蛋白的氨基末端删除少至10个氨基酸或从蛋白的羧基末端删除10个氨基酸都会导致双链RNA结合活性丧失。一个假定的双链RNA结合结构域先前已定位到位于氨基酸234和297之间的一个85个氨基酸的区域(米勒,J.E.,和塞缪尔,C.E.,《病毒学杂志》66,5347 - 5356,1992年)。对该区域两个不同基序内的碱性残基进行诱变表明,一些碱性残基对于与双链RNA结合是绝对必需的,而其他一些残基的改变影响很小。

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