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具有三聚体发夹结构的大型 HIV gp41 构建体表现出 V2E 突变主导的囊泡融合和螺旋失活,与 HIV 融合和感染的 V2E 失活非常相似,并支持:(1)V2E 具有更大的膜接近距离的发夹稳定化;(2)由两个 gp41 三聚体的交错融合肽链组成的反平行β 片层主导 V2E。

A large HIV gp41 construct with trimer-of-hairpins structure exhibits V2E mutation-dominant attenuation of vesicle fusion and helicity very similar to V2E attenuation of HIV fusion and infection and supports: (1) hairpin stabilization of membrane apposition with larger distance for V2E; and (2) V2E dominance by an antiparallel β sheet with interleaved fusion peptide strands from two gp41 trimers.

机构信息

Department of Chemistry, Michigan State University, East Lansing, MI 48824, USA.

Department of Chemistry, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Biophys Chem. 2023 Feb;293:106933. doi: 10.1016/j.bpc.2022.106933. Epub 2022 Nov 24.

DOI:10.1016/j.bpc.2022.106933
PMID:36508984
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9879285/
Abstract

There is complete attenuation of fusion and infection mediated by HIV gp160 with gp41 subunit with V2E mutation, and also V2E dominance with WT/V2E mixtures. V2E is at the N-terminus of the ∼25-residue fusion peptide (Fp) which likely binds the target membrane. In this study, large V2E attenuation and dominance were observed for vesicle fusion induced by FP_HM, a large gp41 ectodomain construct with Fp followed by hyperthermostable hairpin with N- and C-helices, and membrane-proximal external region (Mper). FP_HM is a trimer-of-hairpins, the final gp41 structure during fusion. Vesicle fusion and helicity were measured for FP_HM using trimers with different fractions (f's) of WT and V2E proteins. Reductions in FP_HM fusion and helicity vs. f were quantitatively-similar to those for gp160-mediated fusion and infection. Global fitting of all V2E data supports 6 WT gp41 (2 trimers) required for fusion. These data are understood by a model in which the ∼25 kcal/mol free energy for initial membrane apposition is compensated by the thermostable hairpin between the Fp in target membrane and Mper/transmembrane domain in virus membrane. The data support a structural model for V2E dominance with a membrane-bound Fp with antiparallel β sheet and interleaved strands from the two trimers. Relative to f = 0, a longer Fp sheet is stabilized with small f because of salt-bridge and/or hydrogen bonds between E2 on one strand and C-terminal Fp residues on adjacent strands, like R22. A longer Fp sheet results in shorter N- and C-helices, and larger separation during membrane apposition which hinders fusion.

摘要

带有 V2E 突变的 HIV gp160 与其 gp41 亚基的融合和感染完全受到抑制,并且 V2E 也对 WT/V2E 混合物具有优势。V2E 位于融合肽(Fp)的 N 端,其长度约为 25 个残基,可能与靶膜结合。在这项研究中,观察到带有 Fp 的大 gp41 外显子结构域构建体 FP_HM 诱导的囊泡融合中,V2E 具有较大的衰减和优势,该构建体具有 Fp 以及高热稳定性发夹和 N-和 C-螺旋以及膜近端外部区域(Mper)。FP_HM 是三螺旋发夹,是融合过程中的最终 gp41 结构。使用具有不同 WT 和 V2E 蛋白分数(f)的三聚体,测量了 FP_HM 的囊泡融合和螺旋性。FP_HM 融合和螺旋性与 f 的减少与 gp160 介导的融合和感染定量相似。所有 V2E 数据的全局拟合支持融合需要 6 个 WT gp41(2 个三聚体)。这些数据可以通过一种模型来理解,该模型认为初始膜贴合的约 25 千卡/摩尔自由能由靶膜中 Fp 与病毒膜中 Mper/跨膜结构域之间的高热稳定性发夹补偿。这些数据支持 V2E 优势的结构模型,该模型中膜结合的 Fp 具有反平行β片层和来自两个三聚体的交错链。与 f=0 相比,较小的 f 会稳定更长的 Fp 片层,因为一个链上的 E2 与相邻链上的 C 端 Fp 残基之间存在盐桥和/或氢键,例如 R22。更长的 Fp 片层导致 N-和 C-螺旋变短,并且在膜贴合过程中的分离更大,这阻碍了融合。

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