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HIV-1衣壳蛋白CypA结合区域的突变影响原代巨噬细胞中衣壳蛋白的稳定性和病毒复制。

Mutations in CypA Binding Region of HIV-1 Capsid Affect Capsid Stability and Viral Replication in Primary Macrophages.

作者信息

Setiawan Laurentia C, van Dort Karel A, Rits Maarten A N, Kootstra Neeltje A

机构信息

Laboratory of Viral Immune Pathogenesis, Department of Experimental Immunology, Center for Infection and Immunity Amsterdam (CINIMA), Academic Medical Center, University of Amsterdam , Amsterdam, the Netherlands .

出版信息

AIDS Res Hum Retroviruses. 2016 Apr;32(4):390-8. doi: 10.1089/AID.2014.0361. Epub 2015 Oct 20.

Abstract

Mutations in the cyclophilin A (CypA) binding region in the HIV-1 capsid affect their dependency on the known HIV-1 cofactor CypA and allow escape from the HIV-1 restriction factor Trim5α in human and simian cells. Here we study the effect of these mutations in the CypA binding region of capsid on cofactor binding, capsid destabilization, and viral replication in primary cells. We showed that the viral capsid with mutations in the CypA binding region (CypA-BR) interacted efficiently with CypA, but had an increased stability upon infection as compared to the wild-type capsid. Interestingly, the wild-type virus was able to infect monocyte-derived macrophages (MDM) more efficiently as compared to the CypA-BR mutant variant. The lower infectivity of the CypA-BR mutant virus in MDM was associated with lower levels of reverse transcription products. Similar to the wild-type virus, the CypA-BR mutant variant was unable to induce a strong innate response in primary macrophages. These data demonstrate that mutations in the CypA binding site of the capsid resulted in higher capsid stability and hampered infectivity in macrophages.

摘要

HIV-1衣壳中亲环素A(CypA)结合区域的突变会影响病毒对已知HIV-1辅助因子CypA的依赖性,并使其能够逃避人和猴细胞中的HIV-1限制因子Trim5α。在此,我们研究衣壳CypA结合区域的这些突变对原代细胞中辅助因子结合、衣壳去稳定化和病毒复制的影响。我们发现,CypA结合区域(CypA-BR)发生突变的病毒衣壳能与CypA高效相互作用,但与野生型衣壳相比,感染时稳定性增加。有趣的是,与CypA-BR突变体变体相比,野生型病毒能够更有效地感染单核细胞衍生的巨噬细胞(MDM)。CypA-BR突变病毒在MDM中的较低感染性与较低水平的逆转录产物有关。与野生型病毒类似,CypA-BR突变体变体无法在原代巨噬细胞中诱导强烈的先天免疫反应。这些数据表明,衣壳CypA结合位点的突变导致衣壳稳定性更高,并阻碍了其在巨噬细胞中的感染性。

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