首页> 外文OA文献 >Sequential CD4-Coreceptor Interactions in Human Immunodeficiency Virus Type 1 Env Function: Soluble CD4 Activates Env for Coreceptor-Dependent Fusion and Reveals Blocking Activities of Antibodies against Cryptic Conserved Epitopes on gp120
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Sequential CD4-Coreceptor Interactions in Human Immunodeficiency Virus Type 1 Env Function: Soluble CD4 Activates Env for Coreceptor-Dependent Fusion and Reveals Blocking Activities of Antibodies against Cryptic Conserved Epitopes on gp120

机译:在人类免疫缺陷病毒1型Env中的顺序CD4-Coreceptor相互作用:可溶性CD4激活Env进行Coreceptor依赖性融合,并揭示针对gp120上的隐秘保守表位的抗体的阻断活性。

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摘要

We devised an experimental system to examine sequential events by which the human immunodeficiency virus type 1 (HIV-1) envelope glycoprotein (Env) interacts with CD4 and coreceptor to induce membrane fusion. Recombinant soluble CD4 (sCD4) activated fusion between effector cells expressing Env and target cells expressing coreceptor (CCR5 or CXCR4) but lacking CD4. sCD4-activated fusion was dose dependent, occurred comparably with two- and four-domain proteins, and demonstrated Env-coreceptor specificities parallel to those reported in conventional fusion and infectivity systems. Fusion activation occurred upon sCD4 preincubation and washing of the Env-expressing effector cells but not the coreceptor-bearing target cells, thereby demonstrating that sCD4 exerts its effects by acting on Env. These findings provide direct functional evidence for a sequential two-step model of Env-receptor interactions, whereby gp120 binds first to CD4 and becomes activated for subsequent functional interaction with coreceptor, leading to membrane fusion. We used the sCD4-activated system to explore neutralization by the anti-gp120 human monoclonal antibodies 17b and 48d. These antibodies reportedly bind conserved CD4-induced epitopes involved in coreceptor interactions but neutralize HIV-1 infection only weakly. We found that 17b and 48d had minimal effects in the standard cell fusion system using target cells expressing both CD4 and coreceptor but potently blocked sCD4-activated fusion with target cells expressing coreceptor alone. Both antibodies strongly inhibited sCD4-activated fusion by Envs from genetically diverse HIV-1 isolates. Thus, the sCD4-activated system reveals conserved Env-blocking epitopes that are masked in native Env and hence not readily detected by conventional systems.
机译:我们设计了一个实验系统来检查人类免疫缺陷病毒1型(HIV-1)包膜糖蛋白(Env)与CD4和共受体相互作用以诱导膜融合的连续事件。重组可溶性CD4(sCD4)激活表达Env的效应细胞与表达共感受器(CCR5或CXCR4)但缺乏CD4的靶细胞之间的融合。 sCD4激活的融合是剂量依赖性的,与两域和四域蛋白相当,并且表现出与常规融合和感染性系统平行的Env-共受体特异性。融合激活发生在sCD4预温育和表达Env的效应细胞洗涤后发生,但不携带带有核心受体的靶细胞,因此证明sCD4通过作用于Env发挥其作用。这些发现为Env-受体相互作用的连续两步模型提供了直接的功能证据,其中gp120首先与CD4结合并被激活以用于随后与coreceptor的功能相互作用,从而导致膜融合。我们使用了sCD4激活的系统来探索抗gp120人单克隆抗体17b和48d的中和作用。据报道,这些抗体结合参与共受体相互作用的保守CD4诱导的表位,但仅弱中和HIV-1感染。我们发现17b和48d在使用表达CD4和共受体的靶细胞的标准细胞融合系统中影响最小,但与单独表达共受体的靶细胞有效地阻断了sCD4激活的融合。两种抗体都强烈抑制Envs从遗传多样的HIV-1分离物中得到的sCD4激活的融合。因此,sCD4激活的系统揭示了保守的Env阻断抗原决定簇,这些抗原决定簇在天然Env中被掩盖,因此传统系统不易检测到。

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