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HIV-1包膜三聚体通过一个封闭的中间状态从前融合封闭构象转变为CD4结合开放构象。

HIV-1-envelope trimer transitions from prefusion-closed to CD4-bound-open conformations through an occluded-intermediate state.

作者信息

Lee Myungjin, Lu Maolin, Zhang Baoshan, Zhou Tongqing, Katte Revansiddha, Han Yang, Rawi Reda, Kwong Peter D

机构信息

Vaccine Research Center, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

Department of Cellular and Molecular Biology, School of Medicine, University of Texas at Tyler Health Science Center, Tyler, Texas, 75708, USA.

出版信息

bioRxiv. 2024 Jul 17:2024.07.15.603531. doi: 10.1101/2024.07.15.603531.

Abstract

HIV-1 infection is initiated by the interaction between the gp120 subunit in the envelope (Env) trimer and the cellular receptor CD4 on host cells. This interaction induces substantial structural rearrangement of the Env trimer. Currently, static structural information for prefusion-closed trimers, CD4-bound prefusion-open trimers, and various antibody-bound trimers is available. However, dynamic features between these static states (e.g., transition structures) are not well understood. Here, we investigate the full transition pathway of a site specifically glycosylated Env trimer between prefusion-closed and CD4-bound-open conformations by collective molecular dynamics and single-molecule Förster resonance energy transfer (smFRET). Our investigations reveal and confirm important features of the transition pathway, including movement of variable loops to generate a glycan hole at the trimer apex and formation or rearrangements of α-helices and β-strands. Notably, by comparing the transition pathway to known Env-structures, we uncover evidence for a transition intermediate, with four antibodies, Ab1303, Ab1573, b12, and DH851.3, recognizing this intermediate. Each of these four antibodies induce population shifts of Env to occupy a newly observed smFRET state: the "occluded-intermediate" state. We propose this occluded-intermediate state to be both a prevalent state of Env and an on-path conformation between prefusion-closed and CD4-bound-open states, previously overlooked in smFRET analyses.

摘要

HIV-1感染是由包膜(Env)三聚体中的gp120亚基与宿主细胞上的细胞受体CD4之间的相互作用引发的。这种相互作用会诱导Env三聚体发生大量的结构重排。目前,已有融合前封闭三聚体、CD4结合的融合前开放三聚体以及各种抗体结合三聚体的静态结构信息。然而,这些静态状态之间的动态特征(例如,过渡结构)尚未得到很好的理解。在这里,我们通过集合分子动力学和单分子Förster共振能量转移(smFRET)研究了位点特异性糖基化的Env三聚体在融合前封闭构象和CD4结合开放构象之间的完整过渡途径。我们的研究揭示并证实了过渡途径的重要特征,包括可变环的移动以在三聚体顶端产生一个聚糖孔,以及α螺旋和β链的形成或重排。值得注意的是,通过将过渡途径与已知的Env结构进行比较,我们发现了一种过渡中间体的证据,有四种抗体,即Ab1303、Ab1573、b12和DH851.3,能够识别这种中间体。这四种抗体中的每一种都会诱导Env的群体转移,使其占据一种新观察到的smFRET状态:“封闭中间体”状态。我们提出这种封闭中间体状态既是Env的一种普遍状态,也是融合前封闭状态和CD4结合开放状态之间的一种在途构象,此前在smFRET分析中被忽视了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67de/11275901/fcf21a4738dc/nihpp-2024.07.15.603531v1-f0001.jpg

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