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回溯状态的结构揭示了与人类诺如病毒聚合酶中核苷酸掺入后状态相似的构象变化。

Structure of a backtracked state reveals conformational changes similar to the state following nucleotide incorporation in human norovirus polymerase.

作者信息

Zamyatkin Dmitry, Rao Chandni, Hoffarth Elesha, Jurca Gabriela, Rho Hayeong, Parra Francisco, Grochulski Pawel, Ng Kenneth Kai Sing

机构信息

Department of Biological Sciences, University of Calgary, 2500 University Drive NW, Calgary, Alberta T2N 1N4, Canada.

Departamento de Bioquimica y Biologia Molecular, Universidad de Oviedo, Instituto Universitario de Biotecnologia de Asturias, 33006 Oviedo, Spain.

出版信息

Acta Crystallogr D Biol Crystallogr. 2014 Dec 1;70(Pt 12):3099-109. doi: 10.1107/S1399004714021518. Epub 2014 Nov 22.

Abstract

The RNA-dependent RNA polymerase (RdRP) from norovirus (NV) genogroup II has previously been crystallized as an apoenzyme (APO1) in multiple crystal forms, as well as as a pre-incorporation ternary complex (PRE1) bound to Mn(2+), various nucleoside triphosphates and an RNA primer-template duplex in an orthorhombic crystal form. When crystallized under near-identical conditions with a slightly different RNA primer/template duplex, however, the enzyme-RNA complex forms tetragonal crystals (anisotropic data, dmin ≃ 1.9 Å) containing a complex with the primer/template bound in a backtracked state (BACK1) similar to a post-incorporation complex (POST1) in a step of the enzymatic cycle immediately following nucleotidyl transfer. The BACK1 conformation shows that the terminal nucleotide of the primer binds in a manner similar to the nucleoside triphosphate seen in the PRE1 complex, even though the terminal two phosphoryl groups in the triphosphate moiety are absent and a covalent bond is present between the α-phosphoryl group of the terminal nucleotide and the 3'-oxygen of the penultimate nucleotide residue. The two manganese ions bound at the active site coordinate to conserved Asp residues and the bridging phosphoryl group of the terminal nucleotide. Surprisingly, the conformation of the thumb domain in BACK1 resembles the open APO1 state more than the closed conformation seen in PRE1. The BACK1 complex thus reveals a hybrid state in which the active site is closed while the thumb domain is open. Comparison of the APO1, PRE1 and BACK1 structures of NV polymerase helps to reveal a more complete and complex pathway of conformational changes within a single RdRP enzyme system. These conformational changes lend insight into the mechanism of RNA translocation following nucleotidyl transfer and suggest novel approaches for the development of antiviral inhibitors.

摘要

诺如病毒(NV)基因组II的RNA依赖性RNA聚合酶(RdRP)先前已以多种晶体形式结晶为无酶(APO1),也以正交晶体形式结晶为与Mn(2+)、各种核苷三磷酸和RNA引物-模板双链体结合的预掺入三元复合物(PRE1)。然而,当在几乎相同的条件下用略有不同的RNA引物/模板双链体结晶时,酶-RNA复合物形成四方晶体(各向异性数据,dmin≃1.9 Å),其中包含一个复合物,引物/模板以回溯状态(BACK1)结合,类似于核苷酸转移后酶促循环步骤中的掺入后复合物(POST1)。BACK1构象表明,引物的末端核苷酸以类似于PRE1复合物中所见核苷三磷酸的方式结合,尽管三磷酸部分中的末端两个磷酸基团不存在,并且末端核苷酸的α-磷酸基团与倒数第二个核苷酸残基的3'-氧之间存在共价键。结合在活性位点的两个锰离子与保守的天冬氨酸残基和末端核苷酸的桥连磷酸基团配位。令人惊讶的是,BACK1中拇指结构域的构象与开放的APO1状态更相似,而不是PRE1中所见的封闭构象。因此,BACK1复合物揭示了一种混合状态,其中活性位点是封闭的,而拇指结构域是开放的。NV聚合酶的APO1、PRE1和BACK1结构的比较有助于揭示单个RdRP酶系统内更完整和复杂的构象变化途径。这些构象变化有助于深入了解核苷酸转移后RNA易位的机制,并为开发抗病毒抑制剂提出新方法。

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