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Expression, purification, and characterization of SARS coronavirus RNA polymerase

机译:SARS冠状病毒RNA聚合酶的表达,纯化和鉴定

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摘要

The RNA-dependent RNA polymerase (RdRp) of SARS coronavirus (SARS-CoV) is essential for viral replication and a potential target for anti-SARS drugs. We report here the cloning, expression, and purification of the N-terminal GST-fused SARS-CoV RdRp and its polymerase catalytic domain in Escherichia coli. During purification, the full-length GST-RdRp was found to cleave into three main fragments: an N-terminal p12 fragment, a middle p30 fragment, and a C-terminal p64 fragment comprising the catalytic domain, presumably due to bacterial proteases. Biochemical assays show that the full-length GST-RdRp has RdRp activity and the p64 and p12 fragments form a complex that exhibits comparable RdRp activity, whereas the GST-p64 protein has no activity, suggesting that the p 12 domain is required for polymerase activity possibly via involvement in template-primer binding. Nonnucleoside HIV-1 RT inhibitors are shown to have no evident inhibitory effect on SARS-CoV RdRp activity. This work provides a basis for biochemical and structural studies of SARS-CoV RdRp and for development of anti-SARS drugs. (c) 2005 Elsevier Inc. All rights reserved.
机译:SARS冠状病毒(SARS-CoV)的RNA依赖性RNA聚合酶(RdRp)对于病毒复制至关重要,也是抗SARS药物的潜在靶标。我们在此报告了大肠杆菌中N末端GST融合的SARS-CoV RdRp及其聚合酶催化域的克隆,表达和纯化。在纯化过程中,发现全长的GST-RdRp裂解为三个主要片段:一个N末端的p12片段,一个中间的p30片段和一个C末端的p64片段,包含催化域,可能是由于细菌蛋白酶引起的。生化分析表明,全长GST-RdRp具有RdRp活性,而p64和p12片段形成的复合物表现出可比的RdRp活性,而GST-p64蛋白则没有活性,表明聚合酶活性需要p 12结构域可能通过参与模板-引物结合。已显示非核苷HIV-1 RT抑制剂对SARS-CoV RdRp活性没有明显的抑制作用。这项工作为SARS-CoV RdRp的生化和结构研究以及抗SARS药物的开发提供了基础。 (c)2005 Elsevier Inc.保留所有权利。

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