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A binding pocket for a small molecule inhibitor of HIV-1 entry within the transmembrane helices of CCR5

机译:一个小分子HIV-1进入CCR5跨膜螺旋的抑制剂的结合袋

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摘要

HIV-1 entry into CD4+ cells requires the sequential interactions of the viral envelope glycoproteins with CD4 and a coreceptor such as the chemokine receptors CCR5 and CXCR4. A plausible approach to blocking this process is to use small molecule antagonists of coreceptor function. One such inhibitor has been described for CCR5: the TAK-779 molecule. To facilitate the further development of entry inhibitors as antiviral drugs, we have explored how TAK-779 acts to prevent HIV-1 infection, and we have mapped its site of interaction with CCR5. We find that TAK-779 inhibits HIV-1 replication at the membrane fusion stage by blocking the interaction of the viral surface glycoprotein gp120 with CCR5. We could identify no amino acid substitutions within the extracellular domain of CCR5 that affected the antiviral action of TAK-779. However, alanine scanning mutagenesis of the transmembrane domains revealed that the binding site for TAK-779 on CCR5 is located near the extracellular surface of the receptor, within a cavity formed between transmembrane helices 1, 2, 3, and 7.
机译:HIV-1进入CD4 +细胞需要病毒包膜糖蛋白与CD4和共受体(例如趋化因子受体CCR5和CXCR4)的顺序相互作用。阻止这一过程的可行方法是使用共受体功能的小分子拮抗剂。已经描述了一种用于CCR5的抑制剂:TAK-779分子。为促进进入抑制剂作为抗病毒药物的进一步开发,我们探索了TAK-779如何预防HIV-1感染,并绘制了其与CCR5相互作用的位点。我们发现,TAK-779通过阻断病毒表面糖蛋白gp120与CCR5的相互作用,在膜融合阶段抑制HIV-1复制。我们无法在CCR5的胞外域内发现影响TAK-779抗病毒作用的氨基酸取代。但是,跨膜结构域的丙氨酸扫描诱变显示,CCR5上TAK-779的结合位点位于受体的细胞外表面附近,位于跨膜螺旋1、2、3和7之间形成的腔内。

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