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Mutations in the parainfluenza virus 5 fusion protein reveal domains important for fusion triggering and metastability.副流感病毒 5 融合蛋白中的突变揭示了对融合触发和亚稳性很重要的结构域。
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Structure of the parainfluenza virus 5 (PIV5) hemagglutinin-neuraminidase (HN) ectodomain.副黏病毒 5 型(PIV5)血凝素-神经氨酸酶(HN)外结构域的结构。
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Structure of RSV fusion glycoprotein trimer bound to a prefusion-specific neutralizing antibody.呼吸道合胞病毒融合糖蛋白三聚体与一种预融合特异性中和抗体结合的结构。
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Intermediate conformations during viral fusion glycoprotein structural transition.病毒融合糖蛋白结构转变过程中的中间构象。
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Influenza-virus membrane fusion by cooperative fold-back of stochastically induced hemagglutinin intermediates.流感病毒通过随机诱导的血凝素中间体的协同折返实现膜融合。
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Fast photochemical oxidation of proteins for comparing solvent-accessibility changes accompanying protein folding: data processing and application to barstar.用于比较蛋白质折叠过程中溶剂可及性变化的蛋白质快速光化学氧化:数据处理及对芽孢杆菌RNA酶抑制剂的应用
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通过氧化足迹法探测副粘病毒融合 (F) 蛋白从预融合到融合后的重折叠事件。

Probing the paramyxovirus fusion (F) protein-refolding event from pre- to postfusion by oxidative footprinting.

机构信息

Department of Molecular Biosciences and.

Department of Chemistry and Chemical Biology, Indiana University-Purdue University Indianapolis, Indianapolis, IN 46202;

出版信息

Proc Natl Acad Sci U S A. 2014 Jun 24;111(25):E2596-605. doi: 10.1073/pnas.1408983111. Epub 2014 Jun 9.

DOI:10.1073/pnas.1408983111
PMID:24927585
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4078851/
Abstract

To infect a cell, the Paramyxoviridae family of enveloped viruses relies on the coordinated action of a receptor-binding protein (variably HN, H, or G) and a more conserved metastable fusion protein (F) to effect membrane fusion and allow genomic transfer. Upon receptor binding, HN (H or G) triggers F to undergo an extensive refolding event to form a stable postfusion state. Little is known about the intermediate states of the F refolding process. Here, a soluble form of parainfluenza virus 5 F was triggered to refold using temperature and was footprinted along the refolding pathway using fast photochemical oxidation of proteins (FPOP). Localization of the oxidative label to solvent-exposed side chains was determined by high-resolution MS/MS. Globally, metastable prefusion F is oxidized more extensively than postfusion F, indicating that the prefusion state is more exposed to solvent and is more flexible. Among the first peptides to be oxidatively labeled after temperature-induced triggering is the hydrophobic fusion peptide. A comparison of peptide oxidation levels with the values of solvent-accessible surface area calculated from molecular dynamics simulations of available structural data reveals regions of the F protein that lie at the heart of its prefusion metastability. The strong correlation between the regions of F that experience greater-than-expected oxidative labeling and epitopes for neutralizing antibodies suggests that FPOP has a role in guiding the development of targeted therapeutics. Analysis of the residue levels of labeled F intermediates provides detailed insights into the mechanics of this critical refolding event.

摘要

为了感染细胞,包膜病毒的副粘病毒科依赖于受体结合蛋白(可变 HN、H 或 G)和更保守的亚稳融合蛋白(F)的协调作用来实现膜融合并允许基因组转移。在受体结合后,HN(H 或 G)触发 F 经历广泛的重折叠事件以形成稳定的融合后状态。关于 F 重折叠过程的中间状态知之甚少。在这里,使用温度触发副流感病毒 5 F 的可溶性形式进行重折叠,并使用蛋白质快速光化学氧化(FPOP)沿着重折叠途径进行足迹分析。通过高分辨率 MS/MS 确定氧化标记在溶剂暴露侧链上的定位。总体而言,亚稳定的预融合 F 比融合后 F 被氧化得更广泛,这表明预融合状态更暴露于溶剂且更具柔韧性。在温度诱导触发后第一个被氧化标记的肽是疏水性融合肽。肽氧化水平与从现有结构数据的分子动力学模拟计算的溶剂可及表面积值的比较揭示了 F 蛋白中处于其预融合亚稳性核心的区域。在经历大于预期氧化标记的 F 区域与中和抗体的表位之间存在很强的相关性表明 FPOP 在指导靶向治疗药物的开发中具有作用。标记 F 中间体的残基水平分析提供了对这一关键重折叠事件机制的详细见解。