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Organization of Cellular Receptors into a Nanoscale Junction during HIV-1 Adhesion

机译:HIV-1粘附过程中细胞受体组织成纳米级的结。

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摘要

The fusion of the human immunodeficiency virus type 1 (HIV-1) with its host cell is the target for new antiretroviral therapies. Viral particles interact with the flexible plasma membrane via viral surface protein gp120 which binds its primary cellular receptor CD4 and subsequently the coreceptor CCR5. However, whether and how these receptors become organized at the adhesive junction between cell and virion are unknown. Here, stochastic modeling predicts that, regarding binding to gp120, cellular receptors CD4 and CCR5 form an organized, ring-like, nanoscale structure beneath the virion, which locally deforms the plasma membrane. This organized adhesive junction between cell and virion, which we name the viral junction, is reminiscent of the well-characterized immunological synapse, albeit at much smaller length scales. The formation of an organized viral junction under multiple physiopathologically relevant conditions may represent a novel intermediate step in productive infection.
机译:人类免疫缺陷病毒1型(HIV-1)与宿主细胞的融合是新的抗逆转录病毒疗法的目标。病毒颗粒通过病毒表面蛋白gp120与柔性质膜相互作用,该蛋白结合其主要的细胞受体CD4和随后的共受体CCR5。然而,这些受体是否以及如何在细胞与病毒体之间的粘合连接处组织化尚不清楚。在这里,随机建模预测,关于与gp120的结合,细胞受体CD4和CCR5在病毒体下形成有组织的环状纳米级结构,使质膜局部变形。细胞和病毒体之间的这种有组织的粘合连接,我们称其为病毒连接,尽管长度尺度小得多,却让人联想到特征明确的免疫突触。在多种生理病理学相关条件下,有组织的病毒连接的形成可能代表生产性感染中的新的中间步骤。

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