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Vpu Downmodulates Two Distinct Targets, Tetherin and Gibbon Ape Leukemia Virus Envelope, through Shared Features in the Vpu Cytoplasmic Tail

机译:Vpu通过Vpu细胞质尾巴中的共享特征下调两个不同的靶标Tetherin和长臂猿猿白血病病毒包膜

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摘要

During human immunodeficiency virus-1 (HIV-1) assembly, the host proteins CD4 (the HIV-1 receptor) and tetherin (an interferon stimulated anti-viral protein) both reduce viral fitness. The HIV-1 accessory gene Vpu counteracts both of these proteins, but it is thought to do so through two distinct mechanisms. Modulation of CD4 likely occurs through proteasomal degradation from the endoplasmic reticulum. The exact mechanism of tetherin modulation is less clear, with possible roles for degradation and alteration of protein transport to the plasma membrane. Most investigations of Vpu function have used different assays for CD4 and tetherin. In addition, many of these investigations used exogenously expressed Vpu, which could result in variable expression levels. Thus, few studies have investigated these two Vpu functions in parallel assays, making direct comparisons difficult. Here, we present results from a rapid assay used to simultaneously investigate Vpu-targeting of both tetherin and a viral glycoprotein, gibbon ape leukemia virus envelope (GaLV Env). We previously reported that Vpu modulates GaLV Env and prevents its incorporation into HIV-1 particles through a recognition motif similar to that found in CD4. Using this assay, we performed a comprehensive mutagenic scan of Vpu in its native proviral context to identify features required for both types of activity. We observed considerable overlap in the Vpu sequences required to modulate tetherin and GaLV Env. We found that features in the cytoplasmic tail of Vpu, specifically within the cytoplasmic tail hinge region, were required for modulation of both tetherin and GaLV Env. Interestingly, these same regions features have been determined to be critical for CD4 downmodulation. We also observed a role for the transmembrane domain in the restriction of tetherin, as previously reported, but not of GaLV Env. We propose that Vpu may target both proteins in a mechanistically similar manner, albeit in different cellular locations.
机译:在人类免疫缺陷病毒1(HIV-1)组装过程中,宿主蛋白CD4(HIV-1受体)和tetherin(干扰素刺激的抗病毒蛋白)都会降低病毒适应性。 HIV-1辅助基因Vpu抵消了这两种蛋白,但据认为可以通过两种不同的机制来抵消。 CD4的调节可能是通过内质网的蛋白酶体降解而发生的。系链蛋白调节的确切机制尚不清楚,可能具有降解和改变蛋白转运至质膜的作用。 Vpu功能的大多数研究对CD4和Tetherin使用了不同的检测方法。另外,许多研究使用外源表达的Vpu,这可能导致可变的表达水平。因此,很少有研究在平行测定中研究这两个Vpu功能,因此很难进行直接比较。在这里,我们提出了一种快速测定的结果,该测定用于同时研究系链素和病毒糖蛋白长臂猿白血病病毒包膜(GaLV Env)的Vpu靶向。我们之前曾报道过,Vpu调节GaLV Env,并通过类似于CD4的识别基序阻止其掺入HIV-1颗粒。使用此测定,我们在其天然的前病毒环境中对Vpu进行了全面的诱变扫描,以识别两种活动类型所需的功能。我们观察到调节Tetherin和GaLV Env所需的Vpu序列有相当多的重叠。我们发现在Vpu的胞质尾部,特别是在胞质尾部铰链区域内的功能是调节系链素和GaLV Env所必需的。有趣的是,这些相同的区域特征已被确定对于CD4下调至关重要。如前所述,我们还观察到跨膜结构域在限制tetherin方面的作用,但未观察到GaLV Env。我们建议Vpu可能以机械上相似的方式靶向两种蛋白质,尽管它们位于不同的细胞位置。

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