生物
黄病毒科
病毒分类
糖蛋白
登革热
系统发育学
登革热病毒
病毒学
系统发育树
病毒进化
进化生物学
疱疹病毒糖蛋白B
遗传学
病毒
基因组
丙型肝炎病毒
基因
病毒进入
病毒复制
作者
Jonathon C.O. Mifsud,Spyros Lytras,Michael R. Oliver,Kamilla Toon,Vincenzo A. Costa,Edward C. Holmes,Joe Grove
出处
期刊:Nature
[Springer Nature]
日期:2024-09-04
卷期号:633 (8030): 695-703
被引量:3
标识
DOI:10.1038/s41586-024-07899-8
摘要
Abstract Viral glycoproteins drive membrane fusion in enveloped viruses and determine host range, tissue tropism and pathogenesis 1 . Despite their importance, there is a fragmentary understanding of glycoproteins within the Flaviviridae 2 , a large virus family that include pathogens such as hepatitis C, dengue and Zika viruses, and numerous other human, animal and emergent viruses. For many flaviviruses the glycoproteins have not yet been identified, for others, such as the hepaciviruses, the molecular mechanisms of membrane fusion remain uncharacterized 3 . Here we combine phylogenetic analyses with protein structure prediction to survey glycoproteins across the entire Flaviviridae . We find class II fusion systems, homologous to the Orthoflavivirus E glycoprotein in most species, including highly divergent jingmenviruses and large genome flaviviruses. However, the E1E2 glycoproteins of the hepaciviruses, pegiviruses and pestiviruses are structurally distinct, may represent a novel class of fusion mechanism, and are strictly associated with infection of vertebrate hosts. By mapping glycoprotein distribution onto the underlying phylogeny, we reveal a complex evolutionary history marked by the capture of bacterial genes and potentially inter-genus recombination. These insights, made possible through protein structure prediction, refine our understanding of viral fusion mechanisms and reveal the events that have shaped the diverse virology and ecology of the Flaviviridae .
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