黄病毒
糖基化
病毒复制
内质网
病毒学
复制子
生物
登革热病毒
衣霉素
N-连接糖基化
细胞生物学
HEK 293细胞
病毒
分子生物学
未折叠蛋白反应
聚糖
细胞培养
生物化学
糖蛋白
遗传学
基因
质粒
作者
Shuhan Huang,Pan‐Deng Shi,Xiaoxuan Fan,Yang Yang,Cheng‐Feng Qin,Hui Zhao,Lei Shi,Yali Ci
标识
DOI:10.1186/s12929-024-01048-z
摘要
Abstract Background Flavivirus is a challenge all over the world. The replication of flavivirus takes place within membranous replication compartments (RCs) derived from endoplasmic reticulum (ER). Flavivirus NS1 proteins have been proven essential for the formation of viral RCs by remodeling the ER. The glycosylation of flavivirus NS1 proteins is important for viral replication, yet the underlying mechanism remains unclear. Methods HeLa cells were used to visualize the ER remodeling effects induced by NS1 expression. ZIKV replicon luciferase assay was performed with BHK-21 cells. rZIKV was generated from BHK-21 cells and the plaque assay was done with Vero Cells. Liposome co-floating assay was performed with purified NS1 proteins from 293T cells. Results We found that the glycosylation of flavivirus NS1 contributes to its ER remodeling activity. Glycosylation deficiency of NS1, either through N-glycosylation sites mutations or tunicamycin treatment, compromises its ER remodeling activity and interferes with viral RCs formation. Disruption of NS1 glycosylation results in abnormal aggregation of NS1, rather than reducing its membrane-binding activity. Consequently, deficiency in NS1 glycosylation impairs virus replication. Conclusions In summary, our results highlight the significance of NS1 glycosylation in flavivirus replication and elucidate the underlying mechanism. This provides a new strategy for combating flavivirus infections.
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