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Vpu介导的内质网中gp160/CD4嵌合包膜糖蛋白的蛋白水解作用:CD4锚定结构域和胞质结构域的双重需求

Vpu-mediated proteolysis of gp160/CD4 chimeric envelope glycoproteins in the endoplasmic reticulum: requirement of both the anchor and cytoplasmic domains of CD4.

作者信息

Raja N U, Vincent M J, abdul Jabbar M

机构信息

Department of Molecular Biology, Cleveland Clinic Foundation, Ohio 44195.

出版信息

Virology. 1994 Oct;204(1):357-66. doi: 10.1006/viro.1994.1540.

Abstract

The Vpu protein of HIV-1 induces degradation of CD4 in the endoplasmic reticulum. Previous studies have elucidated the role of the CD4 cytoplasmic domain in the Vpu-induced degradation process, and the minimal Vpu responsive element mapped to a small region in the CD4 tail. In the present study, we have carried out both biochemical and biological experiments to analyze the role of the CD4 anchor domain in the Vpu-induced degradation process. We generated chimeric proteins that possessed the ecto-anchor domains of gp160 and the cytoplasmic domain of CD4. The chimeric envelope glycoproteins were functionally active in the fusion of HeLa CD4+ cells, with the exception of those having the arginine to isoleucine (R to I) substitution in the gp160 anchor domain. Coexpression studies revealed that these chimeric glycoproteins were stable and functionally active in the presence of Vpu, as opposed to those having the anchor-cytoplasmic domains of CD4. The half-life of Vpu-sensitive chimeric glycoproteins was calculated to be approximately 60-90 min, whereas Vpu-resistant envelope glycoproteins exhibited relatively longer half-lives in the presence of Vpu. Taken together, these studies strongly suggest that the CD4 anchor domain appears to provide critical sequence or structural elements through which the Vpu protein could access CD4 or glycoproteins bearing the Vpu responsive element for degradation in the endoplasmic reticulum.

摘要

HIV-1的Vpu蛋白在内质网中诱导CD4降解。先前的研究阐明了CD4胞质结构域在Vpu诱导的降解过程中的作用,并且最小的Vpu反应元件定位于CD4尾部的一个小区域。在本研究中,我们进行了生化和生物学实验,以分析CD4锚定结构域在Vpu诱导的降解过程中的作用。我们构建了具有gp160胞外锚定结构域和CD4胞质结构域的嵌合蛋白。嵌合包膜糖蛋白在HeLa CD4+细胞融合中具有功能活性,但在gp160锚定结构域中具有精氨酸到异亮氨酸(R到I)取代的那些除外。共表达研究表明,与具有CD4锚定-胞质结构域的那些相反,这些嵌合糖蛋白在Vpu存在下是稳定且具有功能活性的。对Vpu敏感的嵌合糖蛋白的半衰期计算约为60-90分钟,而对Vpu抗性的包膜糖蛋白在Vpu存在下表现出相对较长的半衰期。综上所述,这些研究强烈表明,CD4锚定结构域似乎提供了关键的序列或结构元件,通过这些元件Vpu蛋白可以接近CD4或带有Vpu反应元件的糖蛋白,以便在内质网中进行降解。

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