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两种马铃薯Y病毒的NIa蛋白酶对底物的识别涉及多个结构域:利用基因工程杂交蛋白酶分子进行的特性分析

Substrate recognition by the NIa proteinase of two potyviruses involves multiple domains: characterization using genetically engineered hybrid proteinase molecules.

作者信息

Parks T D, Dougherty W G

机构信息

Department of Microbiology, Oregon State University, Corvallis 97331-3804.

出版信息

Virology. 1991 May;182(1):17-27. doi: 10.1016/0042-6822(91)90643-p.

Abstract

The proteolytic activity associated with the small nuclear inclusion protein (NIa proteinase) of tobacco etch virus (TEV), a potyvirus, catalyzes several cleavages at sites within the polyprotein derived from the TEV RNA genome. The homologous proteinase of tobacco vein mottling virus (TVMV), a closely related potyvirus, cleaves at similar, yet distinct, recognition sites. We examined these proteinases, in a cell-free cleavage system, in an attempt to define the biochemical basis of substrate specificity. Each proteinase was specific for its own cleavage site sequence in cell-free trans processing reactions, and no processing of the heterologous cleavage site was evident. Domains of the proteinase which were important in determining this substrate specificity were identified by generating hybrid proteinase genes containing both TEV and TVMV NIa proteinase coding sequences. Using site-directed mutagenesis and standard recombinant DNA techniques, plasmids were constructed which contained coding sequences for hybrid TEV-TVMV proteinases. These plasmids were expressed and tested in a cell-free environment for their ability to cleave both TEV and TVMV substrates. The data suggest that the carboxy-terminal 150 amino acids of the NIa protein contain the necessary information to specifically recognize a particular cleavage site sequence, and that specificity determinants are contained in at least three interactive subdomains within this region.

摘要

烟草蚀纹病毒(TEV,一种马铃薯Y病毒)的小核内含蛋白(NIa蛋白酶)相关的蛋白水解活性,催化了源自TEV RNA基因组的多聚蛋白内多个位点的切割。烟草脉斑驳病毒(TVMV,一种密切相关的马铃薯Y病毒)的同源蛋白酶,在相似但不同的识别位点进行切割。我们在无细胞切割系统中研究了这些蛋白酶,试图确定底物特异性的生化基础。在无细胞转加工反应中,每种蛋白酶对其自身的切割位点序列具有特异性,而异源切割位点没有明显的加工。通过产生包含TEV和TVMV NIa蛋白酶编码序列的杂交蛋白酶基因,鉴定了蛋白酶中对确定这种底物特异性重要的结构域。使用定点诱变和标准重组DNA技术,构建了包含杂交TEV-TVMV蛋白酶编码序列的质粒。这些质粒在无细胞环境中表达并测试其切割TEV和TVMV底物的能力。数据表明,NIa蛋白的羧基末端150个氨基酸包含特异性识别特定切割位点序列的必要信息,并且特异性决定因素包含在该区域内至少三个相互作用的亚结构域中。

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