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A Quantitative and Kinetic Fusion Protein-Triggering Assay Can Discern Distinct Steps in the Nipah Virus Membrane Fusion Cascade

机译:定量和动力学融合蛋白触发分析可以识别尼帕病毒膜融合级联中的不同步骤。

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摘要

The deadly paramyxovirus Nipah virus (NiV) contains a fusion glycoprotein (F) with canonical structural and functional features common to its class. Receptor binding to the NiV attachment glycoprotein (G) triggers F to undergo a two-phase conformational cascade: the first phase progresses from a metastable prefusion state to a prehairpin intermediate (PHI), while the second phase is marked by transition from the PHI to the six-helix-bundle hairpin. The PHI can be captured with peptides that mimic F's heptad repeat regions, and here we utilized a NiV heptad repeat peptide to quantify PHI formation and the half-lives (t1/2) of the first and second fusion cascade phases. We found that ephrinB2 receptor binding to G triggered ∼2-fold more F than that triggered by ephrinB3, consistent with the increased rate and extent of fusion observed with ephrinB2- versus ephrinB3-expressing cells. In addition, for a series of hyper- and hypofusogenic F mutants, we quantified F-triggering capacities and measured the kinetics of their fusion cascade phases. Hyper- and hypofusogenicity can each be manifested through distinct stages of the fusion cascade, giving rise to vastly different half-lives for the first (t1/2, 1.9 to 7.5 min) or second (t1/2, 1.5 to 15.6 min) phase. While three mutants had a shorter first phase and a longer second phase than the wild-type protein, one mutant had the opposite phenotype. Thus, our results reveal multiple critical parameters that govern the paramyxovirus fusion cascade, and our assays should help efforts to elucidate other class I membrane fusion processes.
机译:致命的副粘病毒Nipah病毒(NiV)包含融合糖蛋白(F),其融合了同类病毒的规范结构和功能特征。受体与NiV附着糖蛋白(G)结合会触发F经历两阶段构象级联反应:第一阶段从亚稳态的预融合状态发展为前发夹中间体(PHI),而第二阶段的特征是从PHI转变为六螺旋束发夹。可以用模仿F的七肽重复区的肽捕获PHI,在这里我们利用NiV七肽重复肽来量化PHI的形成以及第一和第二个融合级联相的半衰期(t1 / 2)。我们发现与G结合的ephrinB2受体引发的F比ephrinB3引发的F高约2倍,这与用ephrinB2-和ephrinB3表达的细胞观察到的融合率和融合程度提高是一致的。此外,对于一系列高融合和低融合的F突变体,我们量化了F触发能力并测量了其融合级联相的动力学。超融合和低融合性可以通过融合级联的不同阶段来体现,从而在第一阶段(t1 / 2,1.9至7.5分钟)或第二阶段(t1 / 2,1.5至15.6分钟)产生半衰期。尽管三个突变体的第一期和第二期都比野生型蛋白短,但一个突变体却具有相反的表型。因此,我们的结果揭示了控制副粘病毒融合级联反应的多个关键参数,我们的测定方法应有助于阐明其他I类膜融合过程。

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