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瘟病毒NS3解旋酶的X射线结构及其在溶液中的构象。

X-ray structure of the pestivirus NS3 helicase and its conformation in solution.

作者信息

Tortorici M Alejandra, Duquerroy Stéphane, Kwok Jane, Vonrhein Clemens, Perez Javier, Lamp Benjamin, Bricogne Gerard, Rümenapf Till, Vachette Patrice, Rey Félix A

机构信息

Unité de Virologie Structurale, Département de Virologie, Institut Pasteur, Paris, France CNRS, UMR 3569, Paris, France

Unité de Virologie Structurale, Département de Virologie, Institut Pasteur, Paris, France CNRS, UMR 3569, Paris, France Université Paris Sud, Gif sur Yvette, France.

出版信息

J Virol. 2015 Apr;89(8):4356-71. doi: 10.1128/JVI.03165-14. Epub 2015 Feb 4.

Abstract

UNLABELLED

Pestiviruses form a genus in the Flaviviridae family of small enveloped viruses with a positive-sense single-stranded RNA genome. Viral replication in this family requires the activity of a superfamily 2 RNA helicase contained in the C-terminal domain of nonstructural protein 3 (NS3). NS3 features two conserved RecA-like domains (D1 and D2) with ATPase activity, plus a third domain (D3) that is important for unwinding nucleic acid duplexes. We report here the X-ray structure of the pestivirus NS3 helicase domain (pNS3h) at a 2.5-Å resolution. The structure deviates significantly from that of NS3 of other genera in the Flaviviridae family in D3, as it contains two important insertions that result in a narrower nucleic acid binding groove. We also show that mutations in pNS3h that rescue viruses from which the core protein is deleted map to D3, suggesting that this domain may be involved in interactions that facilitate particle assembly. Finally, structural comparisons of the enzyme in different crystalline environments, together with the findings of small-angle X-ray-scattering studies in solution, show that D2 is mobile with respect to the rest of the enzyme, oscillating between closed and open conformations. Binding of a nonhydrolyzable ATP analog locks pNS3h in a conformation that is more compact than the closest apo-form in our crystals. Together, our results provide new insight and bring up new questions about pNS3h function during pestivirus replication.

IMPORTANCE

Although pestivirus infections impose an important toll on the livestock industry worldwide, little information is available about the nonstructural proteins essential for viral replication, such as the NS3 helicase. We provide here a comparative structural and functional analysis of pNS3h with respect to its orthologs in other viruses of the same family, the flaviviruses and hepatitis C virus. Our studies reveal differences in the nucleic acid binding groove that could have implications for understanding the unwinding specificity of pNS3h, which is active only on RNA duplexes. We also show that pNS3h has a highly dynamic behavior--a characteristic probably shared with NS3 helicases from all Flaviviridae members--that could be targeted for drug design by using recent algorithms to specifically block molecular motion. Compounds that lock the enzyme in a single conformation or limit its dynamic range of conformations are indeed likely to block its helicase function.

摘要

未标记

瘟病毒属黄病毒科,是一类包膜小病毒,具有正义单链RNA基因组。该病毒科的病毒复制需要非结构蛋白3(NS3)C端结构域中包含的超家族2 RNA解旋酶的活性。NS3具有两个具有ATP酶活性的保守RecA样结构域(D1和D2),以及对解开核酸双链很重要的第三个结构域(D3)。我们在此报告瘟病毒NS3解旋酶结构域(pNS3h)在2.5埃分辨率下的X射线结构。该结构在D3结构域与黄病毒科其他属的NS3结构域有显著差异,因为它包含两个重要插入片段,导致核酸结合槽变窄。我们还表明,拯救缺失核心蛋白的病毒的pNS3h突变映射到D3,这表明该结构域可能参与促进病毒粒子组装的相互作用。最后,不同晶体环境中该酶的结构比较,以及溶液中小角X射线散射研究的结果表明,D2相对于酶的其余部分是可移动的,在封闭和开放构象之间振荡。结合不可水解的ATP类似物会将pNS3h锁定在比我们晶体中最接近的无配体形式更紧凑的构象中。总之,我们的结果为瘟病毒复制过程中pNS3h的功能提供了新的见解,并提出了新的问题。

重要性

尽管瘟病毒感染给全球畜牧业造成了重大损失,但关于病毒复制所必需的非结构蛋白,如NS3解旋酶的信息却很少。我们在此提供了pNS3h与其在同一病毒科的其他病毒(黄病毒和丙型肝炎病毒)中的直系同源物的比较结构和功能分析。我们的研究揭示了核酸结合槽的差异,这可能对理解仅对RNA双链有活性的pNS3h解开特异性有影响。我们还表明,pNS3h具有高度动态的行为——这可能是所有黄病毒科成员的NS3解旋酶共有的特征——可以通过使用最近的算法专门阻断分子运动来作为药物设计的靶点。将酶锁定在单一构象或限制其构象动态范围的化合物确实可能阻断其解旋酶功能。

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