先天免疫系统
登革热病毒
生物
免疫系统
登革热
下调和上调
病毒学
毒力
免疫学
聚糖
病毒
炎症
细胞凋亡
表型
病毒血症
干扰素
突变体
抗体
TLR3型
MDA5型
中性粒细胞胞外陷阱
细胞激素风暴
细胞因子
核糖核酸
免疫
RNA干扰
发病机制
机制(生物学)
促炎细胞因子
肿瘤坏死因子α
维罗细胞
作者
Fakhriedzwan Idris,Justin S. G. Ooi,Heng Rong Donald Ting,Eunice Tze Xin Tan,Corrine Wan,Peter I. Benke,Jan K. Marzinek,Jack M. Copping,Qin Hui Li,Lu Yi Ng,Sheau Yng Lim,Ian Walsh,Jane R. Allison,Peter J. Bond,Federico Torta,Terry Nguyen‐Khuong,Kuan Rong Chan,Sylvie Alonso
标识
DOI:10.1038/s44321-025-00311-6
摘要
Abstract Non-structural protein 1 (NS1) of dengue virus (DENV) harbours two conserved N-glycosylation sites at positions 130 and 207, whose biological roles have remained elusive. Using a clinically relevant mouse model of severe dengue, we showed that DENV that lacked N207 glycans on NS1 was significantly attenuated, and this phenotype was dominant over wild-type virulent DENV. Mice infected with this mutant exhibited accelerated viral clearance, milder lymphopenia and more functional DENV-specific CD8 + T cells. Bulk and single-cell RNA sequencing, cytokine measurements and immune-phenotyping revealed blunted innate inflammatory responses early post-infection, which correlated with reduced PD-L1 expression on innate immune cells and reduced PD-1 + T-cells in mice infected with de-glycosylated DENV. PD-1 blockade demonstrated the involvement of premature T-cell apoptosis through the PD-L1/PD-1 axis in DENV pathogenesis. Collectively, our findings support that N207-de-glycosylated NS1 inhibits early inflammatory responses, which restricts PD-L1 upregulation on innate immune cells, which in turn limits PD-L1/PD-1 mediated T-cell apoptosis. Our study uncovers a novel immune evasion strategy and identifies PD-L1/PD-1 as a novel mechanism of dengue immunopathogenesis.
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