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诺如病毒蛋白酶的结构与动力学特征分析。

Structural and dynamics characterization of norovirus protease.

机构信息

Department of Biochemistry, College of Veterinary Medicine, Kansas State University, Manhattan, Kansas 66506, USA.

出版信息

Protein Sci. 2013 Mar;22(3):347-57. doi: 10.1002/pro.2215. Epub 2013 Jan 27.

Abstract

Norovirus protease is an essential enzyme for proteolytic maturation of norovirus nonstructural proteins and has been implicated as a potential target for antiviral drug development. Although X-ray structural studies of the protease give us wealth of structural information including interactions of the protease with its substrate and dimeric overall structure, the role of protein dynamics in the substrate recognition and the biological relevance of the protease dimer remain unclear. Here we determined the solution NMR structure of the 3C-like protease from Norwalk virus (NV 3CLpro), a prototype strain of norovirus, and analyzed its backbone dynamics and hydrodynamic behavior in solution. ¹⁵N spin relaxation and analytical ultracentrifugation analyses demonstrate that NV 3CLpro is predominantly a monomer in solution. Solution structure of NV 3CLpro shows significant structural variation in C-terminal domain compared with crystal structures and among lower energy structure ensembles. Also, ¹⁵N spin relaxation and Carr-Purcell-Meiboom-Gill (CPMG)-based relaxation dispersion analyses reveal the dynamic properties of residues in the C-terminal domain over a wide range of timescales. In particular, the long loop spanning residues T123-G133 show fast motion (ps-ns), and the residues in the bII-cII region forming the large hydrophobic pocket (S2 site) undergo conformational exchanges on slower timescales (μs-ms), suggesting their important role in substrate recognition.

摘要

诺如病毒蛋白酶是诺如病毒非结构蛋白蛋白水解成熟所必需的酶,被认为是抗病毒药物开发的潜在靶点。尽管蛋白酶的 X 射线结构研究为我们提供了丰富的结构信息,包括蛋白酶与其底物的相互作用和二聚体的整体结构,但蛋白质动力学在底物识别中的作用以及蛋白酶二聚体的生物学相关性仍不清楚。在这里,我们确定了诺如病毒(NV)3CLpro 的 3C 样蛋白酶(Norwalk virus 的一种原型株)的溶液 NMR 结构,并分析了其在溶液中的骨架动力学和流体力学行为。¹⁵N 自旋弛豫和分析超速离心分析表明,NV 3CLpro 在溶液中主要以单体形式存在。与晶体结构相比,NV 3CLpro 的溶液结构在 C 末端结构域中显示出显著的结构变化,并且在较低能量结构集合体中也是如此。此外,¹⁵N 自旋弛豫和基于 Carr-Purcell-Meiboom-Gill(CPMG)的弛豫分散分析揭示了 C 末端结构域中残基在广泛时间范围内的动态特性。特别是,跨越残基 T123-G133 的长环显示快速运动(ps-ns),而形成大疏水性口袋(S2 位)的 bII-cII 区域中的残基在较慢的时间尺度上经历构象交换(μs-ms),这表明它们在底物识别中起着重要作用。

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