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导致长臂猿猴白血病病毒包膜对人类免疫缺陷病毒-1 辅助蛋白 Vpu 敏感的序列。

Sequences in gibbon ape leukemia virus envelope that confer sensitivity to HIV-1 accessory protein Vpu.

机构信息

Department of Molecular Microbiology and Immunology, University of Missouri, Columbia, Missouri 65201, USA.

出版信息

J Virol. 2011 Nov;85(22):11945-54. doi: 10.1128/JVI.05171-11. Epub 2011 Sep 14.

Abstract

HIV-1 efficiently forms pseudotyped particles with many gammaretrovirus glycoproteins, such as Friend murine leukemia virus (F-MLV) Env, but not with the related gibbon ape leukemia virus (GaLV) Env or with a chimeric F-MLV Env with a GaLV cytoplasmic tail domain (CTD). This incompatibility is modulated by the HIV-1 accessory protein Vpu. Because the GaLV Env CTD does not resemble tetherin or CD4, the well-studied targets of Vpu, we sought to characterize the modular sequence in the GaLV Env CTD required for this restriction in the presence of Vpu. Using a systematic mutagenesis scan, we determined that the motif that makes GaLV Env sensitive to Vpu is INxxIxxVKxxVxRxK. This region in the CTD of GaLV Env is predicted to form a helix. Mutations in the CTD that would break this helix abolish sensitivity to Vpu. Although many of these positions can be replaced with amino acids with similar biophysical properties without disrupting the Vpu sensitivity, the final lysine residue is required. This Vpu sensitivity sequence appears to be modular, as the unrelated Rous sarcoma virus (RSV) Env can be made Vpu sensitive by replacing its CTD with the GaLV Env CTD. In addition, F-MLV Env can be made Vpu sensitive by mutating two amino acids in its cytoplasmic tail to make it resemble more closely the Vpu sensitivity motif. Surprisingly, the core components of this Vpu sensitivity sequence are also present in the host surface protein CD4, which is also targeted by Vpu through its CTD.

摘要

HIV-1 能够有效地将许多γ逆转录病毒糖蛋白(如 Friend 鼠白血病病毒(F-MLV)Env)包装成假型颗粒,但不能将其与相关的长臂猿猿猴白血病病毒(GaLV)Env 或具有 GaLV 细胞质尾域(CTD)的嵌合 F-MLV Env 包装成假型颗粒。这种不兼容性受 HIV-1 辅助蛋白 Vpu 调节。由于 GaLV Env CTD 与 tetherin 或 CD4 (Vpu 的研究目标)不相似,我们试图确定 GaLV Env CTD 中需要的模块化序列,以在存在 Vpu 的情况下限制这种限制。使用系统的诱变扫描,我们确定了使 GaLV Env 对 Vpu 敏感的基序是 INxxIxxVKxxVxRxK。GaLV Env CTD 中的这个区域预计会形成一个螺旋。破坏这个螺旋的 CTD 突变会使 GaLV Env 失去对 Vpu 的敏感性。尽管在不破坏 Vpu 敏感性的情况下,许多这些位置可以用具有相似物理化学性质的氨基酸替换,但最终的赖氨酸残基是必需的。这个 Vpu 敏感性序列似乎是模块化的,因为不相关的 Rous 肉瘤病毒(RSV)Env 可以通过用 GaLV Env CTD 替换其 CTD 来使其对 Vpu 敏感。此外,通过突变其细胞质尾部的两个氨基酸,F-MLV Env 可以使其对 Vpu 敏感,使其更类似于 Vpu 敏感性基序。令人惊讶的是,这个 Vpu 敏感性序列的核心成分也存在于宿主表面蛋白 CD4 中,CD4 也是 Vpu 通过其 CTD 靶向的。

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