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副粘病毒聚合酶复合物的结构揭示了一种独特的甲基转移酶-CTD 构象。

Structure of a paramyxovirus polymerase complex reveals a unique methyltransferase-CTD conformation.

机构信息

Department of Molecular Biosciences, Northwestern University, Evanston, IL 60208.

Interdisciplinary Biological Sciences Program, Northwestern University, Evanston, IL 60208.

出版信息

Proc Natl Acad Sci U S A. 2020 Mar 3;117(9):4931-4941. doi: 10.1073/pnas.1919837117. Epub 2020 Feb 19.

Abstract

Paramyxoviruses are enveloped, nonsegmented, negative-strand RNA viruses that cause a wide spectrum of human and animal diseases. The viral genome, packaged by the nucleoprotein (N), serves as a template for the polymerase complex, composed of the large protein (L) and the homo-tetrameric phosphoprotein (P). The ∼250-kDa L possesses all enzymatic activities necessary for its function but requires P in vivo. Structural information is available for individual P domains from different paramyxoviruses, but how P interacts with L and how that affects the activity of L is largely unknown due to the lack of high-resolution structures of this complex in this viral family. In this study we determined the structure of the L-P complex from parainfluenza virus 5 (PIV5) at 4.3-Å resolution using cryoelectron microscopy, as well as the oligomerization domain (OD) of P at 1.4-Å resolution using X-ray crystallography. P-OD associates with the RNA-dependent RNA polymerase domain of L and protrudes away from it, while the X domain of one chain of P is bound near the L nucleotide entry site. The methyltransferase (MTase) domain and the C-terminal domain (CTD) of L adopt a unique conformation, positioning the MTase active site immediately above the poly-ribonucleotidyltransferase domain and near the likely exit site for the product RNA 5' end. Our study reveals a potential mechanism that mononegavirus polymerases may employ to switch between transcription and genome replication. This knowledge will assist in the design and development of antivirals against paramyxoviruses.

摘要

副黏液病毒是有包膜的、不分节段的、负链 RNA 病毒,可引起广泛的人类和动物疾病。病毒基因组由核蛋白(N)包装,作为聚合酶复合物的模板,该复合物由大蛋白(L)和同型四聚体磷蛋白(P)组成。约 250kDa 的 L 具有其功能所需的所有酶活性,但需要 P 在体内发挥作用。不同副黏液病毒的 P 结构域的结构信息是可用的,但由于该病毒家族中缺乏该复合物的高分辨率结构,P 如何与 L 相互作用以及如何影响 L 的活性在很大程度上仍是未知的。在这项研究中,我们使用冷冻电子显微镜确定了副流感病毒 5(PIV5)的 L-P 复合物的结构,分辨率为 4.3Å,以及使用 X 射线晶体学确定了 P 的寡聚化结构域(OD)的结构,分辨率为 1.4Å。P-OD 与 L 的 RNA 依赖性 RNA 聚合酶结构域结合并从其突出,而 P 的一条链的 X 结构域则靠近 L 的核苷酸进入位点结合。L 的甲基转移酶(MTase)结构域和 C 末端结构域(CTD)采用独特的构象,将 MTase 活性位点直接置于多核糖核苷酸转移酶结构域上方,并靠近产物 RNA 5'端的可能出口。我们的研究揭示了单负链 RNA 聚合酶可能用于在转录和基因组复制之间切换的潜在机制。这一知识将有助于设计和开发针对副黏液病毒的抗病毒药物。

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