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HIV-1 全长衣壳蛋白在小分子结合诱导的构象捕获未组装状态下的结构。

Structure of the HIV-1 full-length capsid protein in a conformationally trapped unassembled state induced by small-molecule binding.

机构信息

Department of Structural Biology, University of Pittsburgh Medical School, Pittsburgh, PA 15260, USA.

出版信息

J Mol Biol. 2011 Feb 25;406(3):371-86. doi: 10.1016/j.jmb.2010.11.027. Epub 2010 Dec 10.

Abstract

The capsid (CA) protein plays crucial roles in HIV infection and replication, essential to viral maturation. The absence of high-resolution structural data on unassembled CA hinders the development of antivirals effective in inhibiting assembly. Unlike enzymes that have targetable, functional substrate-binding sites, the CA does not have a known site that affects catalytic or other innate activity, which can be more readily targeted in drug development efforts. We report the crystal structure of the HIV-1 CA, revealing the domain organization in the context of the wild-type full-length (FL) unassembled CA. The FL CA adopts an antiparallel dimer configuration, exhibiting a domain organization sterically incompatible with capsid assembly. A small compound, generated in situ during crystallization, is bound tightly at a hinge site ("H site"), indicating that binding at this interdomain region stabilizes the ADP conformation. Electron microscopy studies on nascent crystals reveal both dimeric and hexameric lattices coexisting within a single condition, in agreement with the interconvertibility of oligomeric forms and supporting the feasibility of promoting assembly-incompetent dimeric states. Solution characterization in the presence of the H-site ligand shows predominantly unassembled dimeric CA, even under conditions that promote assembly. Our structure elucidation of the HIV-1 FL CA and characterization of a potential allosteric binding site provides three-dimensional views of an assembly-defective conformation, a state targeted in, and thus directly relevant to, inhibitor development. Based on our findings, we propose an unprecedented means of preventing CA assembly, by "conformationally trapping" CA in assembly-incompetent conformational states induced by H-site binding.

摘要

衣壳 (CA) 蛋白在 HIV 感染和复制中发挥着至关重要的作用,对于病毒成熟至关重要。由于缺乏未组装 CA 的高分辨率结构数据,阻碍了开发有效抑制组装的抗病毒药物。与具有可靶向功能底物结合位点的酶不同,CA 没有已知的影响催化或其他固有活性的位点,而这些活性在药物开发工作中更容易被靶向。我们报告了 HIV-1 CA 的晶体结构,揭示了野生型全长 (FL) 未组装 CA 背景下的结构域组织。FL CA 采用反平行二聚体构象,表现出与衣壳组装不兼容的结构域组织。一种在结晶过程中原位生成的小分子化合物紧密结合在铰链部位(“H 位”),表明该区域的结合稳定了 ADP 构象。对初生晶体的电子显微镜研究揭示了在单个条件下共存的二聚体和六聚体晶格,这与寡聚形式的可转换性一致,并支持促进无组装能力的二聚体状态的可行性。在 H 位配体存在下的溶液特性研究表明,即使在促进组装的条件下,也主要存在未组装的二聚体 CA。我们对 HIV-1 FL CA 的结构阐明和对潜在变构结合位点的表征提供了一种组装缺陷构象的三维视图,这是一种靶向的状态,因此与抑制剂的开发直接相关。基于我们的发现,我们提出了一种通过“构象捕获”CA 进入 H 位结合诱导的无组装能力构象,从而阻止 CA 组装的前所未有的方法。

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