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HIV-1 vpu基因的定点诱变显示出两簇复制缺陷型突变体,它们下调细胞表面CD4和束缚素的能力不同。

Site-Directed Mutagenesis of HIV-1 vpu Gene Demonstrates Two Clusters of Replication-Defective Mutants with Distinct Ability to Down-Modulate Cell Surface CD4 and Tetherin.

作者信息

Nomaguchi Masako, Doi Naoya, Fujiwara Sachi, Fujita Mikako, Adachi Akio

机构信息

Department of Microbiology, Institute of Health Biosciences, The University of Tokushima Graduate School Tokushima, Japan.

出版信息

Front Microbiol. 2010 Nov 24;1:116. doi: 10.3389/fmicb.2010.00116. eCollection 2010.

Abstract

HIV-1 Vpu acts positively on viral infectivity by mediating CD4 degradation in endoplasmic reticulum and enhances virion release by counteracting a virion release restriction factor, tetherin. In order to define the impact of Vpu activity on HIV-1 replication, we have generated a series of site-specific proviral vpu mutants. Of fifteen mutants examined, seven exhibited a replication-defect similar to that of a vpu-deletion mutant in a lymphocyte cell line H9. These mutations clustered in narrow regions within transmembrane domain (TMD) and cytoplasmic domain (CTD). Replication-defective mutants displayed the reduced ability to enhance virion release from a monolayer cell line HEp2 without exception. Upon transfection with Vpu expression vectors, neither TMD mutants nor CTD mutants blocked CD4 expression at the cell surface in another monolayer cell line MAGI. While TMD mutants were unable to down-modulate cell surface tetherin in HEp2 cells, CTD mutants did quite efficiently. Confocal microscopy analysis revealed the difference of intracellular localization between TMD and CTD mutants. In total, replication capability of HIV-1 carrying vpu mutations correlates well with the ability of Vpu to enhance virion release and to impede the cell surface expression of CD4 but not with the ability to down-modulate cell surface tetherin. Our results here suggest that efficient viral replication requires not only down-regulation of cell surface tetherin but also its degradation.

摘要

HIV-1 Vpu 通过在内质网中介导 CD4 降解对病毒感染性产生正向作用,并通过对抗病毒体释放限制因子 tetherin 来增强病毒体释放。为了确定 Vpu 活性对 HIV-1 复制的影响,我们构建了一系列位点特异性的前病毒 vpu 突变体。在检测的 15 个突变体中,有 7 个在淋巴细胞系 H9 中表现出与 vpu 缺失突变体类似的复制缺陷。这些突变集中在跨膜结构域(TMD)和细胞质结构域(CTD)的狭窄区域内。复制缺陷型突变体无一例外地表现出从单层细胞系 HEp2 增强病毒体释放的能力降低。用 Vpu 表达载体转染后,TMD 突变体和 CTD 突变体在另一个单层细胞系 MAGI 中均未阻断细胞表面的 CD4 表达。虽然 TMD 突变体无法下调 HEp2 细胞表面的 tetherin,但 CTD 突变体却能高效下调。共聚焦显微镜分析揭示了 TMD 和 CTD 突变体在细胞内定位上的差异。总体而言,携带 vpu 突变的 HIV-1 的复制能力与 Vpu 增强病毒体释放和阻碍 CD4 细胞表面表达的能力密切相关,而与下调细胞表面 tetherin 的能力无关。我们这里的结果表明,有效的病毒复制不仅需要下调细胞表面的 tetherin,还需要对其进行降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd14/3095391/2e57da7fe98c/fmicb-01-00116-g001.jpg

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