Japanese encephalitis virus NS3 captures the protein translation element by interacting with HNRNPH1 to promote viral replication
文献类型: 外文期刊
第一作者: Wang, Xingya
作者: Wang, Xingya;Li, Lin;Liu, Xuelan;Wang, Xingya;Kong, Ning;Wang, Chen;Qin, Wenzhen;Yang, Xinyu;Yu, Hai;Tong, Wu;Tong, Guangzhi;Zheng, Hao;Shan, Tongling;Kong, Ning;Yu, Hai;Tong, Wu;Tong, Guangzhi;Zheng, Hao;Shan, Tongling;Liu, Xuelan
作者机构:
关键词: JEV; NS3; HNRNPH1; Translation regulation element
期刊名称:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES ( 影响因子:8.5; 五年影响因子:8.7 )
ISSN: 0141-8130
年卷期: 2025 年 289 卷
页码:
收录情况: SCI
摘要: Japanese encephalitis caused by Japanese encephalitis virus (JEV) infection leads to the central nervous system disorder in human and swine. Viruses utilize the host protein synthesis mechanisms to efficiently translate their RNAs. Herein, we demonstrated that the host transcription factor SOX10 downregulated an RNA-binding protein heterogeneous nuclear ribonucleoprotein H (HNRNPH1) during JEV infection. We further showed that JEV replication was promoted when HNRNPH1 inhibited RIG-I/MDA5 signal pathway to decrease interferon (IFN) expression. Remarkably, the multifunctional enzyme NS3 of JEV can capture HNRNPH1 to recruit poly A-binding protein cytoplasmic 1 (PABPC1) and RNA-independent eukaryotic translation initiation factor 4F complex (eIF4F), ultimately promoting viral replication. Collectively, our results provide new insights into the mechanism underlying JEV replication via the nonstructural protein NS3, which captures the translation regulation element by interacting with HNRNPH1 to promote viral replication.
分类号:
- 相关文献
作者其他论文 更多>>
-
CCPNet: Joining the pooling transformer and target context for medical image segmentation
作者:Yang, Yakun;Xue, Hongcheng;Wang, Longhe;Li, Lin;Liu, Xiangping;Feng, Chungang;Liu, Xiangping;Qu, Hao;Qu, Hao
关键词:Computer vision; Medical image segmentation; Pooling transformer; Target context; Tibial dyschondroplasia analysis
-
Texture and structure of high-moisture extrudates produced from soybean protein isolates with different 7S/11S globulin ratios
作者:Fei, Chengxin;Li, Lin;Zhao, Ruojie;Wang, Xinrui;Fan, Bei;Liu, Liya;Wang, Fengzhong;Huang, Yatao;Wang, Fengzhong;Huang, Yatao
关键词:Soybean protein isolate; 7S/11S ratio; High-moisture extrusion; Texture
-
A novel biosensor for detecting V. parahaemolyticus based on cascade signal amplification of CRISPR/Cas14a and Exo III
作者:Wang, Jiahong;Gao, Yuhan;Zhang, Wenhui;Wang, Jiahong;Sun, He;Gao, Yuhan;Bu, Shengjun;Zhang, Zebin;Wang, Chen;Wan, Jiayu;Zhang, Hongyi
关键词:Vibrio parahaemolyticus; Exonuclease III; CRISPR/Cas14a; Aptamer; Cyclic signal amplification
-
Engineering a live-attenuated porcine reproductive and respiratory syndrome virus vaccine to prevent RNA recombination by rewiring transcriptional regulatory sequences
作者:Li, Liwei;Chen, Jinxia;Cao, Zhengda;Guo, Ziqiang;Liu, Jiachen;Zhou, Yanjun;Tong, Guangzhi;Gao, Fei;Chen, Jinxia;Tong, Guangzhi;Gao, Fei
关键词:RNA recombination; porcine reproductive and respiratory syndrome virus (PRRSV); transcriptional regulatory sequence (TRS); recombination-resistant; vaccine redesign
-
Variation in microbial communities and network ecological clusters driven by soil organic carbon in an inshore saline soil amended with hydrochar in Yellow River Delta, China
作者:Yao, Hui;Cheng, Yadong;Kong, Qingxian;Wang, Xiao;You, Xiangwei;Li, Yiqiang;Yao, Hui;Cheng, Yadong;Wang, Xiao;You, Xiangwei;Li, Yiqiang;Rong, Ziguo;Quan, Yue;Zheng, Hao
关键词:Soil carbon; Hydrochar; Soil microorganism; Ecological cluster; Coastal salt-affected soil; Soil health
-
Big data and artificial intelligence-aided crop breeding: Progress and prospects
作者:Zhu, Wanchao;Zhu, Wanchao;Li, Lin;Li, Weifu;Li, Weifu;Zhang, Hongwei
关键词:artificial intelligence; biological big data; breeding; precision design breeding; systems biology
-
The potential endocrine-disrupting of fluorinated pesticides and molecular mechanism of EDPs in cell models
作者:Liu, Yalan;Tan, Jianxin;Liu, Yalan;Wang, Fengzhong;Li, Lin;Fan, Bei;Li, Minmin;Kong, Zhiqiang
关键词:Pesticides; Endocrine-disrupting effect; Estrogen receptor; Cell models; Toxic mechanism