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HIV-1衣壳蛋白N端结构域上的一个新型抑制剂结合位点通过化合物介导的二聚化作用改善了结晶过程。

A novel inhibitor-binding site on the HIV-1 capsid N-terminal domain leads to improved crystallization via compound-mediated dimerization.

作者信息

Lemke Christopher T, Titolo Steve, Goudreau Nathalie, Faucher Anne Marie, Mason Stephen W, Bonneau Pierre

机构信息

Department of Chemistry, Boehringer Ingelheim (Canada) Ltd, 2100 Cunard Street, Laval, Quebec H7S 2G5, Canada.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 Jun;69(Pt 6):1115-23. doi: 10.1107/S0907444913006409. Epub 2013 May 15.

Abstract

Despite truly impressive achievements in the global battle against HIV there remains a need for new drugs directed against novel targets, and the viral capsid protein (CA) may represent one such target. Intense structural characterization of CA over the last two decades has provided unprecedented insight into the structure and assembly of this key viral protein. Furthermore, several inhibitor-binding sites that elicit antiviral activity have been reported on CA, two of which are located on its N-terminal domain (CANTD). In this work, the binding of a novel capsid-assembly inhibitor that targets a unique inhibitory site on CANTD is reported. Moreover, whereas cocrystallization of CANTD in complex with ligands has proven to be challenging in the past, the use of this inhibitor as a tool compound is shown to vastly facilitate ternary cocrystallizations with CANTD. This improvement in crystallization is likely to be achieved through the formation of a compound-mediated homodimer, the intrinsic symmetry of which greatly increases the prospect of generating a crystal lattice. While protein engineering has been used in the literature to support a link between the inherent symmetry of a macromolecule and its propensity to crystallize, to our knowledge this work represents the first use of a synthetic ligand for this purpose.

摘要

尽管在全球抗击艾滋病病毒的战斗中取得了令人瞩目的成就,但仍需要针对新靶点的新药,病毒衣壳蛋白(CA)可能就是这样一个靶点。在过去二十年中,对CA进行的深入结构表征为这种关键病毒蛋白的结构和组装提供了前所未有的见解。此外,已报道CA上有几个能引发抗病毒活性的抑制剂结合位点,其中两个位于其N端结构域(CANTD)。在这项工作中,报道了一种新型衣壳组装抑制剂与CANTD上一个独特抑制位点的结合。此外,尽管过去已证明CANTD与配体的共结晶具有挑战性,但使用这种抑制剂作为工具化合物可极大地促进与CANTD的三元共结晶。结晶的这种改善可能是通过形成化合物介导的同二聚体实现的,其内在对称性大大增加了形成晶格的可能性。虽然文献中已使用蛋白质工程来支持大分子的固有对称性与其结晶倾向之间的联系,但据我们所知,这项工作是首次为此目的使用合成配体。

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