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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Refolding of a paramyxovirus F protein from prefusion to postfusion conformations observed by liposome binding and electron microscopy
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Refolding of a paramyxovirus F protein from prefusion to postfusion conformations observed by liposome binding and electron microscopy

机译:通过脂质体结合和电子显微镜观察到副粘病毒F蛋白从融合前构象到融合后构象的重折叠

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摘要

For paramyxoviruses, two viral glycoproteins are key to the entry process: an attachment protein (HN, H, or G) and the fusion protein (F). The F protein folds to a metastable state that can be triggered to undergo large conformational rearrangements to a fusogenic intermediate and a more stable postfusion state. The triggering mechanism that controls paramyxovirus fusion has not been elucidated. To correlate the molecular structure of a soluble form of the prefusion F (PIV5 F-GCNt) with the biological function of F, soluble F protein was triggered to refold. In the absence of HN,heat was found to function as a surrogate F trigger, and F associated with liposomes and aggregated on sucrose density gradients. Electron microscopy data showed that triggered F formed rosettes. Taken together these data suggest that release and membrane insertion of the hydrophobic fusion peptide require both cleavage of F and heat. Heating of cleaved F causes conversion to a postfusion form as judged by its "golf tee" morphology in the electron microscope. Heating of uncleaved F also causes conversion of F to a morphologically similar form. The reactivity of the F protein with conformation-specific mAbs and peptide binding suggest that soluble F-GCNt and membrane-bound F proteins refold through a comparable pathway.
机译:对于副粘病毒,两种病毒糖蛋白是进入过程的关键:附着蛋白(HN,H或G)和融合蛋白(F)。 F蛋白折叠成亚稳态,可以触发该构象,使其发生大构象重排,形成融合中间体和更稳定的融合后状态。控制副粘病毒融合的触发机制尚未阐明。为了使融合前F的可溶形式(PIV5 F-GCNt)的分子结构与F的生物学功能相关联,触发了可溶的F蛋白重新折叠。在没有HN的情况下,发现热量起着替代F触发的作用,并且F与脂质体相关并聚集在蔗糖密度梯度上。电子显微镜数据显示触发的F形成玫瑰花结。总而言之,这些数据表明疏水融合肽的释放和膜插入需要F和热的裂解。裂解的F的加热导致转化为后融合形式,这由其在电子显微镜中的“ golf tee”形态来判断。未裂解的F的加热还引起F转化成形态相似的形式。 F蛋白与构象特异性mAb和肽结合的反应性表明可溶性F-GCNt和膜结合F蛋白通过可比途径重折叠。

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