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HIV-1 脱壳和核输入先于逆转录在细胞系和原代巨噬细胞中的完成。

HIV-1 Uncoating and Nuclear Import Precede the Completion of Reverse Transcription in Cell Lines and in Primary Macrophages.

机构信息

Department of Pediatrics, Division of Infectious Diseases Emory University School of Medicine, Atlanta, GA 30322, USA.

Children's Healthcare of Atlanta, Atlanta, GA 30322, USA.

出版信息

Viruses. 2020 Oct 30;12(11):1234. doi: 10.3390/v12111234.

Abstract

An assembly of capsid proteins (CA) form the mature viral core enclosing the HIV-1 ribonucleoprotein complex. Discrepant findings have been reported regarding the cellular sites and the extent of core disassembly (uncoating) in infected cells. Here, we combined single-virus imaging and time-of-drug-addition assays to elucidate the kinetic relationship between uncoating, reverse transcription, and nuclear import of HIV-1 complexes in cell lines and monocyte-derived macrophages (MDMs). By using cyclophilin A-DsRed (CDR) as a marker for CA, we show that, in contrast to TZM-bl cells, early cytoplasmic uncoating (loss of CDR) is limited in MDMs and is correlated with the efficiency of reverse transcription. However, we find that reverse transcription is dispensable for HIV-1 nuclear import, which progressed through an uncoating step at the nuclear pore. Comparison of the kinetics of nuclear import and the virus escape from inhibitors targeting distinct steps of infection, as well as direct quantification of viral DNA synthesis, revealed that reverse transcription is completed after nuclear import of HIV-1 complexes. Collectively, these results suggest that reverse transcription is dispensable for the uncoating step at the nuclear pore and that vDNA synthesis is completed in the nucleus of unrelated target cells.

摘要

衣壳蛋白 (CA) 组装形成成熟的病毒核心,将 HIV-1 核糖核蛋白复合物包裹在内。关于感染细胞中核心解组装(脱壳)的细胞位置和程度,已有不同的发现。在这里,我们结合单病毒成像和加药时间测定实验,阐明了细胞系和单核细胞衍生的巨噬细胞 (MDM) 中 HIV-1 复合物的脱壳、逆转录和核内输入之间的动力学关系。通过使用亲环素 A-DsRed(CDR)作为 CA 的标志物,我们表明,与 TZM-bl 细胞相反,早期细胞质脱壳(CDR 丢失)在 MDM 中受到限制,并且与逆转录效率相关。然而,我们发现逆转录对于 HIV-1 核内输入是可有可无的,它通过核孔的脱壳步骤进行。比较核内输入和病毒逃避针对感染不同步骤的抑制剂的动力学,以及直接定量病毒 DNA 合成,揭示了 HIV-1 复合物的核内输入后完成逆转录。总的来说,这些结果表明,逆转录对于核孔的脱壳步骤是可有可无的,并且 vDNA 合成在无关靶细胞的细胞核中完成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/981f/7693591/9f77053f83f3/viruses-12-01234-g001.jpg

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