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雀麦花叶病毒解旋酶样蛋白与聚合酶样蛋白相互作用的生化及遗传分析

Biochemical and genetic analyses of the interaction between the helicase-like and polymerase-like proteins of the brome mosaic virus.

作者信息

O'Reilly E K, Tang N, Ahlquist P, Kao C C

机构信息

Department of Biology, Indiana University, Bloomington 47405, USA.

出版信息

Virology. 1995 Dec 1;214(1):59-71. doi: 10.1006/viro.1995.9954.

Abstract

Replication of the three positive-strand genomic RNAs of brome mosaic virus requires the activities of the helicase-like 1a and the polymerase-like 2a proteins. One hundred fifteen amino acids of the 2a N-terminus and the 1a helicase-like region of over 50 kDa are both necessary and sufficient for 1a-2a interaction. Requirement of the large size of the 1a helicase-like domain suggests that higher order structures might be necessary for the protein's interaction with 2a. To explore the structural properties of 1a, we used limited proteolysis of in vitro-translated 1a protein. Treatment of 1a and its deletion derivatives with papain or trypsin revealed that the C-terminal helicase-like segment of approximately 50-60 kDa is highly resistant under our assay conditions to proteolysis, while the N-terminus is rapidly degraded. All tested mutations in the helicase-like region that renders this region protease-sensitive have previously been found to be defective for RNA replication in vivo. To complement the in vitro studies, we examined the interaction of the 1a helicase-like domain and the 2a N-terminus in yeast using the two-hybrid system. Mutations previously known to disrupt 1a-2a interaction also prevented interaction in yeast. Furthermore, results from two-hybrid analysis suggest that the structural domain mapped in vitro is important for 1a-2a interaction. Finally, we found that the helicase-like proteins of three other tripartite RNA viruses also contain equivalently located protease-resistant domains.

摘要

雀麦花叶病毒三种正链基因组RNA的复制需要解旋酶样1a蛋白和聚合酶样2a蛋白的活性。2a蛋白N端的115个氨基酸以及分子量超过50 kDa的1a解旋酶样区域对于1a与2a的相互作用而言既是必需的也是足够的。1a解旋酶样结构域需要较大的尺寸,这表明该蛋白与2a相互作用可能需要更高阶的结构。为了探究1a的结构特性,我们对体外翻译的1a蛋白进行了有限蛋白酶解。用木瓜蛋白酶或胰蛋白酶处理1a及其缺失衍生物,结果显示在我们的检测条件下,约50 - 60 kDa的C端解旋酶样片段对蛋白酶解具有高度抗性,而N端则迅速降解。在解旋酶样区域中所有经测试的使该区域对蛋白酶敏感的突变先前已被发现在体内RNA复制方面存在缺陷。为补充体外研究,我们利用双杂交系统在酵母中检测了1a解旋酶样结构域与2a N端的相互作用。先前已知会破坏1a - 2a相互作用的突变在酵母中也阻止了相互作用。此外,双杂交分析结果表明体外定位的结构域对于1a - 2a相互作用很重要。最后,我们发现其他三种三分体RNA病毒的解旋酶样蛋白也含有位置相当的蛋白酶抗性结构域。

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