Institute of Immunity and Transplantation, Division of Infection and Immunity, University College, London, United Kingdom.
Institute of Immunity and Transplantation, Division of Infection and Immunity, University College, London, United Kingdom; Institute of Structural and Molecular Biology, Birkbeck College, London, United Kingdom.
J Biol Chem. 2020 Dec 11;295(50):16931-16948. doi: 10.1074/jbc.RA120.014761. Epub 2020 Sep 8.
CD81 plays a central role in a variety of physiological and pathological processes. Recent structural analysis of CD81 indicates that it contains an intramembrane cholesterol-binding pocket and that interaction with cholesterol may regulate a conformational switch in the large extracellular domain of CD81. Therefore, CD81 possesses a potential cholesterol-sensing mechanism; however, its relevance for protein function is thus far unknown. In this study we investigate CD81 cholesterol sensing in the context of its activity as a receptor for hepatitis C virus (HCV). Structure-led mutagenesis of the cholesterol-binding pocket reduced CD81-cholesterol association but had disparate effects on HCV entry, both reducing and enhancing CD81 receptor activity. We reasoned that this could be explained by alterations in the consequences of cholesterol binding. To investigate this further we performed molecular dynamic simulations of CD81 with and without cholesterol; this identified a potential allosteric mechanism by which cholesterol binding regulates the conformation of CD81. To test this, we designed further mutations to force CD81 into either the open (cholesterol-unbound) or closed (cholesterol-bound) conformation. The open mutant of CD81 exhibited reduced HCV receptor activity, whereas the closed mutant enhanced activity. These data are consistent with cholesterol sensing switching CD81 between a receptor active and inactive state. CD81 interactome analysis also suggests that conformational switching may modulate the assembly of CD81-partner protein networks. This work furthers our understanding of the molecular mechanism of CD81 cholesterol sensing, how this relates to HCV entry, and CD81's function as a molecular scaffold; these insights are relevant to CD81's varied roles in both health and disease.
CD81 在多种生理和病理过程中发挥核心作用。最近对 CD81 的结构分析表明,它含有一个跨膜胆固醇结合口袋,与胆固醇的相互作用可能调节 CD81 大胞外域的构象转换。因此,CD81 具有潜在的胆固醇感应机制;然而,其与蛋白质功能的相关性目前尚不清楚。在这项研究中,我们研究了 CD81 在作为丙型肝炎病毒 (HCV) 受体的活性背景下的胆固醇感应。胆固醇结合口袋的结构引导突变降低了 CD81-胆固醇的结合,但对 HCV 进入有不同的影响,既降低了又增强了 CD81 受体的活性。我们推断,这可以用胆固醇结合的后果改变来解释。为了进一步研究这一点,我们对有和没有胆固醇的 CD81 进行了分子动力学模拟;这确定了一种潜在的变构机制,通过该机制,胆固醇结合调节 CD81 的构象。为了验证这一点,我们设计了进一步的突变,将 CD81 强制置于开放(无胆固醇结合)或关闭(胆固醇结合)构象。CD81 的开放突变体表现出降低的 HCV 受体活性,而封闭突变体增强了活性。这些数据与胆固醇感应将 CD81 在受体活性和非活性状态之间切换一致。CD81 相互作用组分析还表明,构象转换可能调节 CD81-伙伴蛋白网络的组装。这项工作进一步加深了我们对 CD81 胆固醇感应的分子机制的理解,以及这与 HCV 进入和 CD81 作为分子支架的功能的关系;这些见解与 CD81 在健康和疾病中的多种作用有关。