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Selective Interactions of Polyanions with Basic Surfaces on Human Immunodeficiency Virus Type 1 gp120

机译:聚阴离子与基本表面在人类免疫缺陷病毒1型gp120上的选择性相互作用

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摘要

It is well established that the gp120 V3 loop of T-cell-line-adapted human immunodeficiency virus type 1 (HIV-1) binds both cell-associated and soluble polyanions. Virus infectivity is increased by interactions between HIV-1 and heparan sulfate proteoglycans on some cell types, and soluble polyanions such as heparin and dextran sulfate neutralize HIV-1 in vitro. However, the analysis of gp120-polyanion interactions has been limited to T-cell-line-adapted, CXCR4-using virus and virus-derived gp120, and the polyanion binding ability of gp120 regions other than the V3 loop has not been addressed. Here we demonstrate by monoclonal-antibody inhibition, labeled heparin binding, and surface plasmon resonance studies that a second site, most probably corresponding to the newly defined, highly conserved coreceptor binding region on gp120, forms part of the polyanion binding surface. Consistent with the binding of polyanions to the coreceptor binding surface, dextran sulfate interfered with the gp120-CXCR4 association while having no detectable effect on the gp120-CD4 interaction. The interaction between polyanions and X4 or R5X4 gp120 was readily detectable, whereas weak or undetectable binding was observed with R5 gp120. Analysis of mutated forms of X4 gp120 demonstrated that the V3 loop is the major determinant for polyanion binding whereas other regions, including the V1/V2 loop structure and the NH2 and COOH termini, exert a more subtle influence. A molecular model of the electrostatic potential of the conserved coreceptor binding region confirmed that it is basic but that the overall charge on this surface is dominated by the V3 loop. These results demonstrate a selective interaction of gp120 with polyanions and suggest that the conserved coreceptor binding surface may present a novel and conserved target for therapeutic intervention.
机译:公认的是,适应T细胞系的1型人类免疫缺陷病毒(HIV-1)的gp120 V3环结合了细胞相关的聚阴离子和可溶性聚阴离子。 HIV-1和硫酸乙酰肝素蛋白聚糖在某些细胞类型上的相互作用会增加病毒的感染力,而可溶性聚阴离子(例如肝素和硫酸葡聚糖)在体外会中和HIV-1。但是,对gp120-聚阴离子相互作用的分析仅限于T细胞系,使用CXCR4的病毒和病毒衍生的gp120,并且尚未解决除V3环以外的gp120区的聚阴离子结合能力。在这里,我们通过单克隆抗体抑制,标记的肝素结合和表面等离振子共振研究证明了第二个位点,最可能对应于gp120上新定义的,高度保守的共受体结合区域,形成了聚阴离子结合表面的一部分。与聚阴离子与共受体结合表面的结合一致,硫酸葡聚糖干扰了gp120-CXCR4缔合,而对gp120-CD4的相互作用没有可检测的影响。聚阴离子与X4或R5X4 gp120之间的相互作用很容易检测到,而R5 gp120则观察到弱或不可检测的结合。对X4 gp120突变形式的分析表明,V3环是决定聚阴离子结合的主要决定因素,而其他区域,包括V1 / V2环结构以及NH2和COOH末端,则产生了更微妙的影响。保守的共受体结合区域的静电势的分子模型证实这是碱性的,但该表面上的总电荷由V3环控制。这些结果证明了gp120与聚阴离子的选择性相互作用,并表明保守的共受体结合表面可能是治疗干预的新靶点。

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