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人冠状病毒229E基因1编码的多聚蛋白氨基末端的蛋白水解加工:一种木瓜蛋白酶样蛋白酶及其底物的鉴定。

Proteolytic processing at the amino terminus of human coronavirus 229E gene 1-encoded polyproteins: identification of a papain-like proteinase and its substrate.

作者信息

Herold J, Gorbalenya A E, Thiel V, Schelle B, Siddell S G

机构信息

Institute of Virology, University of Würzburg, Germany.

出版信息

J Virol. 1998 Feb;72(2):910-8. doi: 10.1128/JVI.72.2.910-918.1998.

Abstract

Expression of the coronavirus gene 1-encoded polyproteins, pp1a and pp1ab, is linked to a series of proteolytic events involving virus-encoded proteinases. In this study, we used transfection and immunoprecipitation assays to show that the human coronavirus 229E-encoded papain-like cysteine proteinase, PCP1, is responsible for the release of an amino-terminal protein, p9, from the gene 1-encoded polyproteins. The same protein, p9, has also been identified in virus-infected cells. Furthermore, using an in vitro trans-cleavage assay, we defined the proteolytic cleavage site at the carboxyl terminus of p9 as pp1a-pp1ab amino acids Gly-111 and Asn-112. These results and a comparative sequence analysis suggest that substrate positions P1 and P5 seem to be the major determinants of the PCP1 cleavage site and that the latter can occupy a variable position at the amino terminus of the coronavirus ppla and pplab polyproteins. By combining the trans-cleavage assay with deletion mutagenesis, we were also able to locate the boundaries of the active PCP1 domain between pp1a-pp1ab amino acids Gly-861-Glu-975 and Asn-1209-Gln-1285. Finally, codon mutagenesis was used to show that Cys-1054 and His-1205 are essential for PCP1 proteolytic activity, suggesting that these amino acids most likely have a catalytic function.

摘要

冠状病毒基因1编码的多聚蛋白pp1a和pp1ab的表达与一系列涉及病毒编码蛋白酶的蛋白水解事件相关。在本研究中,我们使用转染和免疫沉淀试验表明,人冠状病毒229E编码的木瓜样半胱氨酸蛋白酶PCP1负责从基因1编码的多聚蛋白中释放氨基末端蛋白p9。在病毒感染的细胞中也鉴定出了相同的蛋白p9。此外,使用体外转切割试验,我们将p9羧基末端的蛋白水解切割位点定义为pp1a-pp1ab氨基酸Gly-111和Asn-112。这些结果和比较序列分析表明,底物位置P1和P5似乎是PCP1切割位点的主要决定因素,并且后者可以在冠状病毒ppla和pplab多聚蛋白的氨基末端占据可变位置。通过将转切割试验与缺失诱变相结合,我们还能够定位活性PCP1结构域在pp1a-pp1ab氨基酸Gly-861-Glu-975和Asn-1209-Gln-1285之间的边界。最后,使用密码子诱变表明Cys-1054和His-1205对PCP1蛋白水解活性至关重要,这表明这些氨基酸很可能具有催化功能。

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