亲环蛋白A和CPSF6在衣壳上的时空结合调控HIV-1的核进入和整合。

IF 5.1 1区 生物学 Q1 MICROBIOLOGY
mBio Pub Date : 2025-04-09 Epub Date: 2025-02-27 DOI:10.1128/mbio.00169-25
Zachary Ingram, Christopher Kline, Alexandra K Hughson, Parmit K Singh, Hannah L Fischer, Rajalingham Radhakrishnan, Gregory A Sowd, Nayara F B Dos Santos, Barbie K Ganser-Pornillos, Simon C Watkins, Melissa Kane, Alan N Engelman, Zandrea Ambrose
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引用次数: 0

摘要

人类免疫缺陷病毒1型(HIV-1)衣壳是抗病毒药物lenacapavir的靶标,它保护病毒基因组并结合多种宿主蛋白来影响细胞内运输、核输入和整合。先前,我们发现衣壳与细胞质中切割和聚腺苷化特异性因子6 (CPSF6)的结合被亲环蛋白A (CypA)的结合竞争性地抑制,并调节衣壳运输、核输入和感染。在这里,我们确定了CypA结合亲和力增加的衣壳突变体显著减少了核进入和错定位整合。然而,CypA与突变衣壳结合的破坏以依赖cpsf6的方式恢复了核进入、整合和感染。此外,CypA表达从细胞质向细胞核的重新定位未能恢复突变型HIV-1感染。我们的研究结果表明,CypA和CPSF6与HIV-1衣壳的顺序结合是优化核进入和整合靶向所必需的,这为抗逆转录病毒疗法(如lenacapavir)的开发提供了见解。重要性:人类免疫缺陷病毒(HIV)编码一种蛋白质,这种蛋白质形成一个锥形外壳,称为衣壳,包裹着它的基因组。衣壳已被证明可以保护病毒基因组免受细胞内先天免疫传感器的侵害,帮助将基因组运送到细胞核,将逆转录成分保持在一起以将RNA基因组转化为DNA,并将病毒DNA整合到宿主基因组的特定区域。在这项研究中,我们展示了HIV劫持两种宿主蛋白顺序结合到衣壳上,以编排这些病毒复制步骤的精确顺序和时间。这些蛋白与衣壳的结合或它们在细胞中的位置的破坏会导致HIV核输入、整合和感染的缺陷。HIV感染者衣壳蛋白中存在的突变可能会降低靶向衣壳的抗逆转录病毒药物的疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatiotemporal binding of cyclophilin A and CPSF6 to capsid regulates HIV-1 nuclear entry and integration.

Human immunodeficiency virus type 1 (HIV-1) capsid, which is the target of the antiviral lenacapavir, protects the viral genome and binds multiple host proteins to influence intracellular trafficking, nuclear import, and integration. Previously, we showed that capsid binding to cleavage and polyadenylation specificity factor 6 (CPSF6) in the cytoplasm is competitively inhibited by cyclophilin A (CypA) binding and regulates capsid trafficking, nuclear import, and infection. Here, we determined that a capsid mutant with increased CypA binding affinity had significantly reduced nuclear entry and mislocalized integration. However, disruption of CypA binding to the mutant capsid restored nuclear entry, integration, and infection in a CPSF6-dependent manner. Furthermore, relocalization of CypA expression from the cell cytoplasm to the nucleus failed to restore mutant HIV-1 infection. Our results clarify that sequential binding of CypA and CPSF6 to HIV-1 capsid is required for optimal nuclear entry and integration targeting, providing insights for the development of antiretroviral therapies, such as lenacapavir.

Importance: Human immunodeficiency virus (HIV) encodes a protein that forms a conical shell, called a capsid, that surrounds its genome. The capsid has been shown to protect the viral genome from innate immune sensors in the cell, to help transport the genome toward and into the nucleus, to keep the components of reverse transcription together for conversion of the RNA genome into DNA, and to target viral DNA integration into specific regions of the host genome. In this study, we show that HIV hijacks two host proteins to bind to capsid sequentially in order to choreograph the precise order and timing of these virus replication steps. Disruption of binding of these proteins to capsid or their location in the cell leads to defective HIV nuclear import, integration, and infection. Mutations that exist in the capsid protein of HIV in infected individuals may reduce the efficacy of antiretroviral drugs that target capsid.

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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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