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辛德毕斯病毒非结构蛋白2(Sindbis virus NSP2)是一种自蛋白酶,可加工病毒非结构多聚蛋白的证据。

Evidence that Sindbis virus NSP2 is an autoprotease which processes the virus nonstructural polyprotein.

作者信息

Ding M X, Schlesinger M J

机构信息

Department of Microbiology and Immunology, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

Virology. 1989 Jul;171(1):280-4. doi: 10.1016/0042-6822(89)90539-4.

Abstract

The four nonstructural proteins (nsP1-4) of Sindbis virus, a member of the Togaviridae family, are initially expressed from the 5' segment of the single-stranded genomic (+)RNA as a polyprotein which is subsequently proteolytically processed. In attempts to identify the protease acting on this nonstructural polyprotein, we established a coupled in polyprotein, we established a coupled in vitro transcription-translation system which was able to faithfully process the major polyprotein when an mRNA encoding all four nonstructural proteins was used. A cDNA plasmid containing the entire Sindbis virus genome positioned immediately downstream of the phage SP6 polymerase promoter was cut with restriction endonucleases at sites located within the genes for the nonstructural proteins and mRNAs transcribed from these DNA fragments. The nsP1-2 and nsP2-3 cleavage sites are alanyl-alanine and both were susceptible to proteolysis in vitro only after all of nsp1 and nsP2 and 157 amino acids of nsP3 were translated. The nsP1-2 site was cleaved from a polyprotein that contained nsP1 and nsP2 and 59 amino acids of nsP3 but not from six polyproteins whose sequences terminated in the nsP2 gene. These data support our hypothesis that the nonstructural polyprotein is processed by a virus autoprotease and we propose that its active site is encoded within the nsP2 sequences.

摘要

辛德毕斯病毒是披膜病毒科的成员,其四种非结构蛋白(nsP1 - 4)最初从单链基因组(+)RNA的5'端作为多聚蛋白表达,随后进行蛋白水解加工。为了鉴定作用于这种非结构多聚蛋白的蛋白酶,我们建立了一个体外转录 - 翻译偶联系统,当使用编码所有四种非结构蛋白的mRNA时,该系统能够忠实地加工主要的多聚蛋白。一个包含整个辛德毕斯病毒基因组且位于噬菌体SP6聚合酶启动子下游的cDNA质粒,在非结构蛋白基因内的位点用限制性内切酶切割,并从这些DNA片段转录mRNA。nsP1 - 2和nsP2 - 3的切割位点是丙氨酰 - 丙氨酸,并且仅在所有nsp1、nsP2和nsP3的157个氨基酸被翻译后才在体外易受蛋白水解作用。nsP1 - 2位点从包含nsP1、nsP2和nsP3的59个氨基酸的多聚蛋白上被切割,但不是从六个序列在nsP2基因终止的多聚蛋白上被切割。这些数据支持我们的假设,即非结构多聚蛋白由病毒自身蛋白酶加工,并且我们提出其活性位点在nsP2序列内编码。

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