Monkeypox virus (MPXV) causes severe diseases in immunocompromised individuals. How MPXV evades the host defense remain enigmatic. We performed expression screens and identified MPXV OPG147, a membrane fusion machinery protein, as an inhibitor of cGAS-MITA/STING-mediated innate immunity. OPG147 from other poxviruses including the prototypic vaccinia virus (VACV) shows similar functions. OPG147 is associated with MITA/STING and STIM1, a calcium sensor that retains MITA/STING in the ER. OPG147 does not block cGAMP binding to MITA, but inhibits its ISGylation, dimerization/oligomerization and trafficking, thereby suppressing its activation. Mutation of VACV OPG147 F55/T116/T117 to alanine (VACVOPG147/3A) has no effects on its infection and replication, but induces higher innate immune response compared with wild-type VACV in cells and mice. VACVOPG147/3A infection also results in lower viral loads and decreased disease severity in mice. Our findings suggest that OPG147 contributes to immune evasion and is a virulence factor of poxviruses.
The conserved poxvirus membrane entry-fusion apparatus component OPG147 targets MITA/STING for immune evasion.
痘病毒膜进入融合装置保守组分OPG147靶向MITA/STING以逃避免疫
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作者:Yi Xue-Mei, Li Mi, Wang Su-Yun, Wang Shi-Han, Zeng Jia-Qing, Lei Ya-Li, Zhang Yu, Zhu Chun-Yu, Zhang Ying, Song Jun-Hui, Chen Yun-Da, Wang Yun, Shu Hong-Bing, Li Shu, Wang Yan-Yi
| 期刊: | PLoS Pathogens | 影响因子: | 4.900 |
| 时间: | 2025 | 起止号: | 2025 Jun 11; 21(6):e1013198 |
| doi: | 10.1371/journal.ppat.1013198 | 研究方向: | 其它 |
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