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首页> 外文期刊>Journal of Molecular Biology >Crystal structure and activity of Kunjin virus NS3 helicase; Protease and helicase domain assembly in the full length NS3 protein
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Crystal structure and activity of Kunjin virus NS3 helicase; Protease and helicase domain assembly in the full length NS3 protein

机译:昆金病毒NS3解旋酶的晶体结构和活性;全长NS3蛋白中的蛋白酶和解旋酶结构域组装

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摘要

Flaviviral NS3 is a multifunctional protein displaying N-terminal protease activity in addition to C-terminal helicase, nucleoside 5'-triphosphatase (NTPase), and 5'-terminal RNA triphosphatase (RTPase) activities. NS3 is held to support the separation of RNA daughter and template strands during viral replication. In addition, NS3 assists the initiation of replication by unwinding the RNA secondary structure in the 3' non-translated region (NTR). We report here the three-dimensional structure (at 3.1 angstrom resolution) of the NS3 helicase domain (residues 186-619; NS3:186-619) from Kunjin virus, an Australian variant of the West Nile virus. As for homologous helicases, NS3:186-619 is composed of three domains, two of which are structurally related and held to host the NTPase and RTPase active sites. The third domain (C-terminal) is involved in RNA binding/ recognition. The NS3:186-619 construct occurs as a dimer in solution and in the crystals. We show that NS3:186-619 displays both ATPase and RTPase activities, that it can unwind a double-stranded RNA substrate, being however inactive on a double-stranded DNA substrate. Analysis of different constructs shows that full length NS3 displays increased helicase activity, suggesting that the protease domain plays an assisting role in the RNA unwinding process. The structural interaction between the helicase and protease domain has been assessed using small angle X-ray scattering on full length NS3, disclosing that the protease and helicase domains build a rather elongated molecular assembly differing from that observed in the NS3 protein from hepatitis C virus. (C) 2007 Elsevier Ltd. All rights reserved.
机译:黄病毒NS3是一种多功能蛋白,除C端解旋酶,核苷5'-三磷酸酶(NTPase)和5'-端RNA三磷酸酶(RTPase)活性外,还具有N端蛋白酶活性。持有NS3以在病毒复制过程中支持RNA子链和模板链的分离。此外,NS3通过展开3'非翻译区(NTR)中的RNA二级结构来辅助复制的启动。我们在这里报告来自昆金病毒(西尼罗河病毒的澳大利亚变种)的NS3解旋酶域(残基186-619; NS3:186-619)的三维结构(以3.1埃分辨率)。至于同源解旋酶,NS3:186-619由三个结构域组成,其中两个在结构上相关并被保留以承载NTPase和RTPase活性位点。第三结构域(C末端)参与RNA结合/识别。 NS3:186-619构建体在溶液和晶体中以二聚体形式存在。我们显示NS3:186-619显示ATPase和RTPase活性,它可以展开双链RNA底物,但是对双链DNA底物无活性。对不同构建体的分析表明,全长NS3展示了增加的解旋酶活性,表明蛋白酶结构域在RNA解链过程中起辅助作用。已经使用全长NS3上的小角度X射线散射评估了解旋酶和蛋白酶结构域之间的结构相互作用,揭示了蛋白酶和解旋酶结构域构建了与在丙型肝炎病毒的NS3蛋白中观察到的分子组装不同的相当长的分子组装。 (C)2007 Elsevier Ltd.保留所有权利。

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