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HIV 衣壳是小分子治疗干预的一个可行靶点。

HIV capsid is a tractable target for small molecule therapeutic intervention.

机构信息

Pfizer Global Research and Development, La Jolla Laboratories, San Diego, California, United States of America.

出版信息

PLoS Pathog. 2010 Dec 9;6(12):e1001220. doi: 10.1371/journal.ppat.1001220.

Abstract

Despite a high current standard of care in antiretroviral therapy for HIV, multidrug-resistant strains continue to emerge, underscoring the need for additional novel mechanism inhibitors that will offer expanded therapeutic options in the clinic. We report a new class of small molecule antiretroviral compounds that directly target HIV-1 capsid (CA) via a novel mechanism of action. The compounds exhibit potent antiviral activity against HIV-1 laboratory strains, clinical isolates, and HIV-2, and inhibit both early and late events in the viral replication cycle. We present mechanistic studies indicating that these early and late activities result from the compound affecting viral uncoating and assembly, respectively. We show that amino acid substitutions in the N-terminal domain of HIV-1 CA are sufficient to confer resistance to this class of compounds, identifying CA as the target in infected cells. A high-resolution co-crystal structure of the compound bound to HIV-1 CA reveals a novel binding pocket in the N-terminal domain of the protein. Our data demonstrate that broad-spectrum antiviral activity can be achieved by targeting this new binding site and reveal HIV CA as a tractable drug target for HIV therapy.

摘要

尽管目前抗逆转录病毒疗法(ART)在治疗 HIV 方面的标准很高,但仍不断出现多药耐药株,这突显出需要额外的新型机制抑制剂,以在临床上提供更多的治疗选择。我们报告了一类新型小分子抗逆转录病毒化合物,它们通过一种新的作用机制直接靶向 HIV-1 衣壳(CA)。这些化合物对 HIV-1 实验室株、临床分离株和 HIV-2 均表现出强大的抗病毒活性,并抑制病毒复制周期中的早期和晚期事件。我们提出的机制研究表明,这些早期和晚期活性分别源自化合物影响病毒脱壳和组装。我们表明,HIV-1 CA N 端结构域的氨基酸取代足以赋予对这类化合物的抗性,从而确定 CA 是感染细胞中的靶标。该化合物与 HIV-1 CA 的高分辨率共晶结构揭示了该蛋白 N 端结构域中的一个新结合口袋。我们的数据表明,通过靶向这个新的结合位点可以实现广谱抗病毒活性,并揭示 HIV CA 是 HIV 治疗中一个可行的药物靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53d8/3000358/4587a3fb6f50/ppat.1001220.g001.jpg

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