首页> 美国卫生研究院文献>Journal of Virology >The two biological activities of human immunodeficiency virus type 1 Vpu protein involve two separable structural domains.
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The two biological activities of human immunodeficiency virus type 1 Vpu protein involve two separable structural domains.

机译:人类免疫缺陷病毒1型Vpu蛋白的两种生物学活性涉及两个可分离的结构域。

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摘要

The human immunodeficiency virus type 1 (HIV-1) Vpu protein is an integral membrane phosphoprotein that induces CD4 degradation in the endoplasmic reticulum and enhances virus release from the cell surface. CD4 degradation is specific, requires phosphorylation of Vpu, and involves the interaction between Vpu and the CD4 cytoplasmic domain. In contrast, regulation of virus release is less specific and not restricted to HIV-1 and may be mechanistically-distinct from CD4 degradation. We show here that a mutant of Vpu, Vpu35, lacking most of its cytoplasmic domain has residual biological activity for virus release but is unable to induce CD4 degradation. This finding suggests that the N terminus of Vpu encoding the transmembrane (TM) anchor represents an active domain important for the regulation of virus release but not CD4 degradation. To better define the functions of Vpu's TM anchor and cytoplasmic domain, we designed a mutant, VpuRD, containing a scrambled TM sequence with a conserved amino acid composition and alpha-helical structure. The resulting protein was integrated normally into membranes, was able to form homo-oligomers, and exhibited expression levels, protein stability, and subcellular localization similar to those of wild-type Vpu. Moreover, VpuRD was capable of binding to CD4 and to induce CD4 degradation with wild-type efficiency, confirming proper membrane topology and indicating that the alteration of the Vpu TM domain did not interfere with this function of Vpu. However, VpuRD was unable to enhance the release of virus particles from infected or transfected cells, and virus encoding VpuRD had replication characteristics in T cells indistinguishable from those of a Vpu-deficient HIV-1 isolate. Mutation of the phosphorylation sites in VpuRD resulted in a protein which was unable to perform either function of Vpu. The results of our experiments suggest that the two biological activities of Vpu operate via two distinct molecular mechanisms and involve two different structural domains of the Vpu protein.
机译:1型人类免疫缺陷病毒(HIV-1)Vpu蛋白是一种完整的膜磷蛋白,可在内质网中诱导CD4降解并增强病毒从细胞表面的释放。 CD4降解是特异性的,需要Vpu磷酸化,并涉及Vpu和CD4胞质域之间的相互作用。相反,病毒释放的调控特异性较低,并且不仅限于HIV-1,在机理上可能与CD4降解不同。我们在这里显示,缺少大部分细胞质结构域的Vpu突变体Vpu35具有病毒释放的残留生物活性,但无法诱导CD4降解。该发现表明,编码跨膜(TM)锚的Vpu的N末端代表对于调节病毒释放但对CD4降解不重要的活性域。为了更好地定义Vpu的TM锚和细胞质结构域的功能,我们设计了一个突变体VpuRD,其中包含带有保守氨基酸组成和α-螺旋结构的TM序列混乱。所得蛋白质通常整合到膜中,能够形成同源寡聚体,并且表现出与野生型Vpu相似的表达水平,蛋白质稳定性和亚细胞定位。此外,VpuRD能够与CD4结合并以野生型效率诱导CD4降解,从而确认适当的膜拓扑结构,并表明Vpu TM结构域的改变不干扰Vpu的这一功能。但是,VpuRD无法增强病毒颗粒从受感染或转染细胞中的释放,并且编码VpuRD的病毒在T细胞中具有与Vpu缺陷型HIV-1分离株无法区分的复制特性。 VpuRD中磷酸化位点的突变导致无法执行Vpu任一功能的蛋白质。我们的实验结果表明,Vpu的两种生物学活性通过两种不同的分子机制起作用,并且涉及Vpu蛋白的两个不同的结构域。

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