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非融合诱导型HIV-1糖蛋白的共表达可抑制另一种HIV-1 Env蛋白诱导的融合形成。

Coexpression of a nonsyncytium inducer HIV-1 glycoprotein inhibits syncytium formation by another HIV-1 Env protein.

作者信息

Li Y Y, O'Donnell M A, Perez L G

机构信息

Molecular Biology and Biotechnology Program, Salem-Teikyo University-Tampa Bay Research Institute, St. Petersburg, Florida 33716, USA.

出版信息

Virology. 1996 Jan 15;215(2):197-202. doi: 10.1006/viro.1996.0023.

DOI:10.1006/viro.1996.0023
PMID:8560767
Abstract

The biosynthesis and biological properties of the envelope glycoprotein from a primary isolate of the human immunodeficiency virus type 1, HIV-1 YU2, and the Env product from the laboratory-adapted strain, HIV-1 LAI were compared in the absence of viral replication. We found that the level of expression and proteolytic processing into gp120/gp41 complexes of both glycoproteins was equivalent and independent of the cell type used. Although the two glycoproteins were detected on the surface of HeLa cells expressing high levels of CD4, only the HIV LAI Env product induced significant syncytium formation. Interestingly, when both glycoproteins were coexpressed in HeLa-CD4 cells, syncytium formation was greatly reduced. However, cell fusion could be restored by increasing amounts of the LAI envelope gene product. HeLa-CD4 cells expressing either glycoprotein fused with high efficiency to CEM-A cells, a hybrid of CEM and peripheral blood mononuclear cells, indicating that both glycoproteins were expressed in a biologically active form on the surface of these cells. These studies suggest that primary isolates and laboratory adapted stains may require, in addition to the CD4 receptor, independent accessory membrane components for the fusion activation step. Our results agree with the concept that virus entry requires the concerted activation of each glycoprotein subunit of the Env oligomeric complex.

摘要

在无病毒复制的情况下,对来自人类免疫缺陷病毒1型(HIV-1)原发性分离株HIV-1 YU2的包膜糖蛋白的生物合成及生物学特性,与实验室适应性毒株HIV-1 LAI的Env产物进行了比较。我们发现,两种糖蛋白的表达水平以及向gp120/gp41复合物的蛋白水解加工是相当的,且与所用细胞类型无关。尽管在高表达CD4的HeLa细胞表面检测到了这两种糖蛋白,但只有HIV LAI Env产物诱导了显著的合胞体形成。有趣的是,当两种糖蛋白在HeLa-CD4细胞中共表达时,合胞体形成大大减少。然而,通过增加LAI包膜基因产物的量可恢复细胞融合。表达任一糖蛋白的HeLa-CD4细胞都能高效地与CEM-A细胞(CEM与外周血单个核细胞的杂交细胞)融合,这表明两种糖蛋白在这些细胞表面均以生物活性形式表达。这些研究表明,除了CD4受体外,原发性分离株和实验室适应性毒株在融合激活步骤可能还需要独立的辅助膜成分。我们的结果与病毒进入需要Env寡聚复合物的每个糖蛋白亚基协同激活这一概念相符。

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