-
[1]
Ying-wei Ma, Shu-bin Hao, Le-le Sun, Jing Li, Qiao Qiao, Feng Gao, Li Zhao, Xue-jie Yu, Zhi-yu Wang, Hong-ling Wen, 2015: Construction and characterization of infectious cDNA clones of enterovirus 71 (EV71), Virologica Sinica, 30, 305-308. doi: 10.1007/s12250-015-3614-3
-
[2]
Jiaming Cao, Meng Qu, Hongtao Liu, Xuan Wan, Fang Li, Ali Hou, Yan Zhou, Bo Sun, Linjun Cai, Weiheng Su, Chunlai Jiang, 2020: Myristoylation of EV71 VP4 is Essential for Infectivity and Interaction with Membrane Structure, Virologica Sinica, 35, 599-613. doi: 10.1007/s12250-020-00226-1
-
[3]
Jingchang Xue, Yaoming Li, Xiaoyi Xu, Jie Yu, Hu Yan, Huimin Yan, 2015: EV71 infection correlates with viral IgG preexisting at pharyngolaryngeal mucosa in children, Virologica Sinica, 30, 146-152. doi: 10.1007/s12250-014-3555-2
-
[4]
Xiaolei Zhou, Li Tian, Jian Wang, Baisong Zheng, Wenyan Zhang, 2022: EV71 3C protease cleaves host anti-viral factor OAS3 and enhances virus replication, Virologica Sinica, 37, 418-426. doi: 10.1016/j.virs.2022.04.013
-
[5]
Lichao Zang, Jin Gu, Xinyu Yang, Yukang Yuan, Hui Guo, Wei Zhou, Jinhong Ma, Yan Chen, Yumin Wu, Hui Zheng, Weifeng Shi, 2023: Ubiquitin-specific protease 24 promotes EV71 infection by restricting K63-linked polyubiquitination of TBK1, Virologica Sinica, 38, 75-83. doi: 10.1016/j.virs.2022.11.001
-
[6]
Junrui Ren, Lei Yu, Qiuhan Zhang, Pengyu Ren, Yumeng Cai, Xueyun Wang, Ke Lan, Shuwen Wu, 2024: AIMP2 restricts EV71 replication by recruiting SMURF2 to promote the degradation of 3D polymerase, Virologica Sinica, 39, 632-644. doi: 10.1016/j.virs.2024.06.009
-
[7]
Tao Lin, Lingzhi Xianyu, Songya Lyu, 2015: Monoclonal neutralizing antibodies against EV71 screened from mice immunized with yeast-produced virus-like particles, Virologica Sinica, 30, 208-213. doi: 10.1007/s12250-015-3573-8
-
[8]
Baisong Zheng, Xiaolei Zhou, Li Tian, Jian Wang, Wenyan Zhang, 2022: IFN-β1b induces OAS3 to inhibit EV71 via IFN-β1b/JAK/STAT1 pathway, Virologica Sinica, 37, 676-684. doi: 10.1016/j.virs.2022.07.013
-
[9]
Yi Yin, Yi Zhang, Lelin Sun, Shuqiang Wang, Yong Zeng, Bo Gong, Lulin Huang, Yongquan He, Zhenglin Yang, 2024: Association analysis of genetic variants in critical patients with COVID-19 and validation in a Chinese population, Virologica Sinica, 39, 347-350. doi: 10.1016/j.virs.2024.02.004
-
[10]
Dongyan Xiong, Caroline Muema, Xiaoxu Zhang, Xinming Pan, Jin Xiong, Hang Yang, Junping Yu, Hongping Wei, 2021: Enriched Opportunistic Pathogens Revealed by Metagenomic Sequencing Hint Potential Linkages between Pharyngeal Microbiota and COVID-19, Virologica Sinica, 36, 924-933. doi: 10.1007/s12250-021-00391-x
-
[11]
张裕平, 陈绳亮, 陈立群, 李天宪, 2002: Sequencing and Expression of PP71 Gene of Human Cytomegalor Virus, Virologica Sinica, 17, 189-192.
-
[12]
Yahui Liu, Panjing Lv, Wei Wang, Jiahai Zhang, Xi Zhou, Yang Qiu, Kun Cai, Haoran Zhang, Yuan Fang, Yan Li, 2023: Structural insight into EV-A71 3A protein and its interaction with a peptide inhibitor, Virologica Sinica, 38, 975-979. doi: 10.1016/j.virs.2023.09.004
-
[13]
Chong Wang, Bingyu Guo, Yilin Li, Xi Zhou, Zongqiang Cui, Yujie Ren, 2026: EV-A71 induces GSDME-dependent T-cell pyroptosis: A novel mechanism and MeCbl therapeutic potential, Virologica Sinica, 41, 651-661. doi: 10.1016/j.virs.2026.05.006
-
[14]
Li-chun WANG, Song-qing TANG, Yan-mei TANG, Hong-lin ZHAO, Cheng-hong DONG, Ping-fang CUI, Shao-hui MA, Long-ding LIU, Qi-han LI, 2010: A Comparison of the Biological Characteristics of EV 71 C 4 Subtypes from Different Epidemic Strains*, Virologica Sinica, 25, 98-106. doi: 10.1007/s12250-010-3102-8
-
[15]
Juemin Xi, Fei Ye, Guanzhou Wang, Wei Han, Zhizhong Wei, Bin Yin, Jiangang Yuan, Boqin Qiang, Xiaozhong Peng, 2019: Polypyrimidine Tract-Binding Protein Regulates Enterovirus 71 Translation Through Interaction with the Internal Ribosomal Entry Site, Virologica Sinica, 34, 66-67. doi: 10.1007/s12250-019-00089-1
-
[16]
Carla Bianca Luena Victorio, Yishi Xu, Qimei Ng, Vincent T. K. Chow, Kaw Bing Chua, 2020: Reverse Genetic Analysis of Adaptive Mutations within the Capsid Proteins of Enterovirus 71 (EV-A71) Strains Necessary for Infection of CHO-K1 Cells, Virologica Sinica, 35, 110-114. doi: 10.1007/s12250-019-00167-4
-
[17]
Shumin Zhang, Yuan Fang, Shuai Ren, Xuhua Zhang, Chenggong Zheng, Zhipeng Qin, Wenqiang Wei, Huabin Zheng, Chuntian Li, Zekun Wang, Yujie Ren, 2025: Ubiquitin-specific protease 5 promotes EV-A71 replication by de-ubiquitinating MAVS and IRF3, Virologica Sinica, 40, 910-920. doi: 10.1016/j.virs.2025.12.002
-
[18]
Bangtao Chen, Yuya Wang, Xinyi Pei, Sanyuan Wang, Hao Zhang, Yihong Peng, 2020: Cellular Caspase-3 Contributes to EV-A71 2Apro-Mediated DownRegulation of IFNAR1 at the Translation Level, Virologica Sinica, 35, 64-72. doi: 10.1007/s12250-019-00151-y
-
[19]
Peng Shu, Azeem Mehmood Butt, Zhiqiang Mi, Wei Wang, Xiaoping An, Guangqian Pei, Zhiyi Zhang, Yong Huang, Xianglilan Zhang, Taoxing Shi, Yigang Tong, 2015: Identification and genomic analysis of a novel member of Microviridae, IME-16, through high-throughput sequencing, Virologica Sinica, 30, 301-304. doi: 10.1007/s12250-015-3596-1
-
[20]
Xiaoyan Li, Xin Gao, Ming Zou, Zhichao Zhuang, Zhaolin Tan, Baolu Zheng, Aiping Yu, Xu Su, 2021: SARS-CoV-2 Genomic Sequencing Revealed N501Y and L452R Mutants of S/A Lineage in Tianjin Municipality, China, Virologica Sinica, 36, 1228-1231. doi: 10.1007/s12250-021-00432-5