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登革热病毒非结构蛋白 5(NS5)聚合酶的晶体结构阐明了增强其热稳定性和从头起始活性的结构域间氨基酸残基。

A crystal structure of the dengue virus non-structural protein 5 (NS5) polymerase delineates interdomain amino acid residues that enhance its thermostability and de novo initiation activities.

机构信息

From the Novartis Institute for Tropical Diseases, Singapore 138670, Singapore.

出版信息

J Biol Chem. 2013 Oct 25;288(43):31105-14. doi: 10.1074/jbc.M113.508606. Epub 2013 Sep 11.

Abstract

The dengue virus (DENV) non-structural protein 5 (NS5) comprises an N-terminal methyltransferase and a C-terminal RNA-dependent RNA polymerase (RdRp) domain. Both enzymatic activities form attractive targets for antiviral development. Available crystal structures of NS5 fragments indicate that residues 263-271 (using the DENV serotype 3 numbering) located between the two globular domains of NS5 could be flexible. We observed that the addition of linker residues to the N-terminal end of the DENV RdRp core domain stabilizes DENV1-4 proteins and improves their de novo polymerase initiation activities by enhancing the turnover of the RNA and NTP substrates. Mutation studies of linker residues also indicate their importance for viral replication. We report the structure at 2.6-Å resolution of an RdRp fragment from DENV3 spanning residues 265-900 that has enhanced catalytic properties compared with the RdRp fragment (residues 272-900) reported previously. This new orthorhombic crystal form (space group P21212) comprises two polymerases molecules arranged as a dimer around a non-crystallographic dyad. The enzyme adopts a closed "preinitiation" conformation similar to the one that was captured previously in space group C2221 with one molecule per asymmetric unit. The structure reveals that residues 269-271 interact with the RdRp domain and suggests that residues 263-268 of the NS5 protein from DENV3 are the major contributors to the flexibility between its methyltransferase and RdRp domains. Together, these results should inform the screening and development of antiviral inhibitors directed against the DENV RdRp.

摘要

登革热病毒(DENV)非结构蛋白 5(NS5)包含 N 端甲基转移酶和 C 端 RNA 依赖性 RNA 聚合酶(RdRp)结构域。这两种酶活性都形成了抗病毒药物开发的有吸引力的靶点。可用的 NS5 片段晶体结构表明,位于 NS5 两个球状结构域之间的 263-271 位残基(采用 DENV 血清型 3 编号)可能是灵活的。我们观察到,在 DENV RdRp 核心结构域的 N 端添加连接子残基可稳定 DENV1-4 蛋白,并通过增强 RNA 和 NTP 底物的周转率来提高其从头聚合酶起始活性。连接子残基的突变研究也表明它们对病毒复制很重要。我们报告了分辨率为 2.6-Å 的 DENV3 RdRp 片段的结构,该片段跨越 265-900 位残基,与之前报道的 RdRp 片段(残基 272-900)相比,具有增强的催化特性。这种新的正交晶型(空间群 P21212)包含两个排列成二聚体的聚合酶分子,围绕非晶体二联体排列。该酶采用类似于以前在空间群 C2221 中捕获的封闭“起始前”构象,每个不对称单位一个分子。该结构揭示了残基 269-271 与 RdRp 结构域相互作用,并表明 DENV3 的 NS5 蛋白的残基 269-271 与 RdRp 结构域之间的灵活性的主要贡献者是残基 263-268。这些结果应该为针对 DENV RdRp 的抗病毒抑制剂的筛选和开发提供信息。

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