Structures of two lyssavirus glycoproteins trapped in pre- and post-fusion states and the implications on the spatial-temporal conformational transition along with pH-decrease.

IF 4.9 1区 医学 Q1 MICROBIOLOGY PLoS Pathogens Pub Date : 2025-02-19 eCollection Date: 2025-02-01 DOI:10.1371/journal.ppat.1012923
Fanli Yang, Sheng Lin, Xin Yuan, Siqi Shu, Yueru Yu, Jing Yang, Fei Ye, Zimin Chen, Bin He, Jian Li, Qi Zhao, Haoyu Ye, Yu Cao, Guangwen Lu
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Abstract

Lyssavirus glycoprotein plays a crucial role in mediating virus entry and serves as the major target for neutralizing antibodies. During membrane fusion, the lyssavirus glycoprotein undergoes a series of low-pH-induced conformational transitions. Here, we report the structures of Ikoma lyssavirus and Mokola lyssavirus glycoproteins, with which we believe that we have trapped the proteins in pre-fusion and post-fusion states respectively. By analyzing the available lyssaviral glycoprotein structures, we present a sequential conformation-transition model, in which two structural elements in the glycoprotein undergo fine-modulated secondary structural transitions, changing the glycoprotein from a bended hairpin conformation to an extended linear conformation. In addition, such conformational change is further facilitated, as observed in our surface plasmon resonance assay, by the pH-regulated interactions between the membrane-proximal region and the pleckstrin homology and the fusion domains. The structural features elucidated in this study will facilitate the design of vaccines and anti-viral drugs against lyssaviruses.

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两种溶血病毒糖蛋白在融合前和融合后的结构及其随ph值降低的时空构象转变的意义。
溶血病毒糖蛋白在介导病毒入侵中起着至关重要的作用,是中和抗体的主要靶点。在膜融合过程中,溶血病毒糖蛋白经历了一系列低ph诱导的构象转变。在这里,我们报道了Ikoma溶血病毒和Mokola溶血病毒糖蛋白的结构,我们认为我们已经分别将蛋白质捕获在融合前和融合后状态。通过分析现有的溶血病毒糖蛋白结构,我们提出了一个序列构象转变模型,其中糖蛋白中的两个结构元素经历了精细调节的二级结构转变,将糖蛋白从弯曲的发夹构象转变为扩展的线性构象。此外,正如我们在表面等离子体共振实验中观察到的那样,这种构象变化进一步促进了ph调节的膜近端区域与普莱克斯琴弦同源性和融合域之间的相互作用。本研究阐明的结构特征将有助于设计针对溶血病毒的疫苗和抗病毒药物。
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来源期刊
PLoS Pathogens
PLoS Pathogens MICROBIOLOGY-PARASITOLOGY
自引率
3.00%
发文量
598
期刊介绍: Bacteria, fungi, parasites, prions and viruses cause a plethora of diseases that have important medical, agricultural, and economic consequences. Moreover, the study of microbes continues to provide novel insights into such fundamental processes as the molecular basis of cellular and organismal function.
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