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捕获 HIV-1 蛋白酶在近原子分辨率晶体结构中的反应途径。

Capturing the reaction pathway in near-atomic-resolution crystal structures of HIV-1 protease.

机构信息

Department of Biology, Molecular Basis of Disease Program, Georgia State University, Atlanta, Georgia 30303, United States.

出版信息

Biochemistry. 2012 Oct 2;51(39):7726-32. doi: 10.1021/bi3008092. Epub 2012 Sep 21.

Abstract

Snapshots of three consecutive steps in the proteolytic reaction of HIV-1 protease (PR) were obtained in crystal structures at resolutions of 1.2-1.4 Å. Structures of wild-type protease and two mutants (PR(V32I) and PR(I47V)) with V32I and I47V substitutions, which are common in drug resistance, reveal the gem-diol tetrahedral intermediate, the separating N- and C-terminal products, and the C-terminal product of an autoproteolytic peptide. These structures represent three stages in the reaction pathway and shed light on the reaction mechanism. The near-atomic-resolution geometric details include a short hydrogen bond between the intermediate and the outer carboxylate oxygen of one catalytic Asp25 that is conserved in all three structures. The two products in the complex with mutant PR(I47V) have a 2.2 Å separation of the amide and carboxyl carbon of the adjacent ends, suggesting partial cleavage prior to product release. The complex of mutant PR(V32I) with a single C-terminal product shows density for water molecules in the other half of the binding site, including a partial occupancy water molecule interacting with the product carboxylate end and the carbonyl oxygen of one conformation of Gly27, which suggests a potential role of Gly27 in recycling from the product complex to the ligand-free enzyme. These structural details at near-atomic resolution enhance our understanding of the reaction pathway and will assist in the design of mechanism-based inhibitors as antiviral agents.

摘要

在分辨率为 1.2-1.4Å 的晶体结构中,获得了 HIV-1 蛋白酶 (PR) 蛋白水解反应中连续三个步骤的快照。野生型蛋白酶和两个突变体(PR(V32I)和 PR(I47V))的结构,其中 V32I 和 I47V 取代是耐药性中常见的,揭示了 gem-二醇四面体型中间体、分离的 N-和 C-末端产物以及自切割肽的 C-末端产物。这些结构代表了反应途径的三个阶段,并阐明了反应机制。近原子分辨率的几何细节包括中间体与三个结构中均保守的一个催化天冬氨酸残基的外羧基氧之间的短氢键。与突变体 PR(I47V)形成复合物的两个产物的酰胺和相邻末端的羧基碳之间有 2.2Å 的分离,表明在产物释放之前有部分裂解。与单 C-末端产物的突变体 PR(V32I)形成复合物显示出结合位点另一半水分子的密度,包括与产物羧基末端和一种构象甘氨酸 27 的羰基氧相互作用的部分占据水分子,这表明甘氨酸 27 在从产物复合物到无配体酶的循环中可能具有作用。这些近原子分辨率的结构细节增强了我们对反应途径的理解,并将有助于设计基于机制的抑制剂作为抗病毒药物。

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