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Cytolysis by CCR5-Using Human Immunodeficiency Virus Type 1 Envelope Glycoproteins Is Dependent on Membrane Fusion and Can Be Inhibited by High Levels of CD4 Expression

机译:通过使用人类免疫缺陷病毒1型包膜糖蛋白的CCR5的细胞溶解取决于膜融合,并可以被高水平的CD4表达抑制。

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摘要

T-tropic (X4) and dualtropic (R5X4) human immunodeficiency virus type 1 (HIV-1) envelope glycoproteins kill primary and immortalized CD4+ CXCR4+ T cells by mechanisms involving membrane fusion. However, because much of HIV-1 infection in vivo is mediated by M-tropic (R5) viruses whose envelope glycoproteins use CCR5 as a coreceptor, we tested a panel of R5 and R5X4 envelope glycoproteins for their ability to lyse CCR5+ target cells. As is the case for CXCR4+ target cells, HIV-1 envelope glycoproteins expressed by single-round HIV-1 vectors killed transduced CD4+ CCR5+ cells in a membrane fusion-dependent manner. Furthermore, a CD4-independent R5 HIV-1 envelope glycoprotein was able to kill CD4-negative target cells expressing CCR5, demonstrating that CD4 is not intrinsically required for the induction of death. Interestingly, high levels of CD4 expression protected cells from lysis and syncytium formation mediated by the HIV-1 envelope glycoproteins. Immunoprecipitation experiments showed that high levels of CD4 coexpression inhibited proteolytic processing of the HIV-1 envelope glycoprotein precursor gp160. This inhibition could be overcome by decreasing the CD4 binding ability of gp120. Studies were also undertaken to investigate the ability of virion-bound HIV-1 envelope glycoproteins to kill primary CD4+ T cells. However, neither X4 nor R5X4 envelope glycoproteins on noninfectious virions caused death in primary CD4+ T cells. These results demonstrate that the interaction of CCR5 with R5 HIV-1 envelope glycoproteins capable of inducing membrane fusion leads to cell lysis; overexpression of CD4 can inhibit cell killing by limiting envelope glycoprotein processing.
机译:T-tropic(X4)和Dualtropic(R5X4)1型人类免疫缺陷病毒(HIV-1)包膜糖蛋白通过涉及膜融合的机制杀死了原代和永生化CD4 + CXCR4 + T细胞。但是,由于体内许多HIV-1感染是由M-tropic(R5)病毒介导的,其包膜糖蛋白使用CCR5作为共受体,因此我们测试了一组R5和R5X4包膜糖蛋白裂解CCR5 +目标细胞的能力。与CXCR4 +靶细胞一样,单轮HIV-1载体表达的HIV-1包膜糖蛋白以膜融合依赖性方式杀死转导的CD4 + CCR5 +细胞。此外,不依赖CD4的R5 HIV-1包膜糖蛋白能够杀死表达CCR5的CD4阴性靶细胞,表明诱导死亡并非内在需要CD4。有趣的是,高水平的CD4表达可保护细胞免受HIV-1包膜糖蛋白介导的裂解和合胞体形成。免疫沉淀实验表明,高水平的CD4共表达抑制了HIV-1包膜糖蛋白前体gp160的蛋白水解过程。可以通过降低gp120的CD4结合能力来克服这种抑制作用。还进行了研究以调查与病毒体结合的HIV-1包膜糖蛋白杀死CD4 + T细胞的能力。然而,非感染性病毒粒子上的X4和R5X4包膜糖蛋白均未引起原代CD4 + T细胞死亡。这些结果证明CCR5与能够诱导膜融合的R5 HIV-1包膜糖蛋白的相互作用导致细胞裂解。 CD4的过表达可通过限制包膜糖蛋白加工来抑制细胞杀伤。

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