数字农科院2.0

Efficient and robust reverse genetics system for bovine rotavirus generation and its application for antiviral screening

文献类型: 外文期刊

作者: Qin, Song-Kang;Li, Kuan-Hao;Liu, Ben-Jin;Cao, Cun;Yu, De-Bin;Jiang, Zhi-Gang;Wang, Jun;Han, Yu-Xin;Wang, Fang;Qi, Ying-Lin;Sun, Chao;Yu, Li;Chang, Ji-Tao;Yin, Xin

作者机构:

关键词: Bovine rotavirus (BRV);Optimized reverse genetics system;Reporter virus;High-throughput screen;Small chemical compound

期刊名称: VIROLOGICA SINICA

ISSN: 1674-0769

年卷期: 2025 年 39 卷 6 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版)

摘要: Unveiling the molecular mechanisms underlying rotavirus replication and pathogenesis has been hampered by the lack of a reverse genetics (RG) system in the past. Since 2017, multiple plasmid-based RG systems for simian, human, and murine-like rotaviruses have been established. However, none of the described methods have supported the recovery of bovine rotaviruses (BRVs). Here, we established an optimized plasmid-based RG system for BRV culture-adapted strain (BRV G10P [15] BLR) and clinical isolates (BRV G6P [1] C73, G10P [11] HM26) based on a BHK-T7 cell clone stably expressing T7 polymerase. Furthermore, using this optimized RG system, we successfully rescued the reporter virus BRV rC73/Zs, rHM26/Zs and rBLR/Zs, harboring a genetically modified 1.8-kb segment 7 encoding full-length nonstructural protein 3 (NSP3) fused to ZsGreen, a 232-amino acid green fluorescent protein. Analysis of the stability of genomic insertions showed that the rC73/Zs and rBLR/Zs replicated efficiently and were genetically stable in seven rounds of serial passaging, while rHM26/Zs can be stabilized only up to the third generation, indicating that the BRV segment composition may influence the viral fitness. In addition, we adopted the recombinant reporter viruses for high-throughput screening application and discovered 12 candidates out of 1440 compounds with potential antiviral activities against rotavirus. In summary, this improved RG system of BRVs represents an important tool with great potential for understanding the molecular biology of BRV and facilitates the development of novel therapeutics and vaccines for BRV.

分类号:

  • 相关文献

[1]RNA interference screening of interferon-stimulated genes with antiviral activities against classical swine fever virus using a reporter virus. Wang, Xiao,Li, Yongfeng,Li, Lian-Feng,Shen, Liang,Zhang, Lingkai,Yu, Jiahui,Luo, Yuzi,Sun, Yuan,Li, Su,Qiu, Hua-Ji.

[2]Novel reverse genetics of genotype I and III Japanese encephalitis viruses assembled through transformation associated recombination in yeast: The reporter viruses expressing a green fluorescent protein for the antiviral screening assay. Chenxi Li,Xuan Chen,Yanyang Zhou,Jingbo Hu,Xinjie Wang,Yanhua Li. 2022

[3]Senecavirus A Entry Into Host Cells Is Dependent on the Cholesterol-Mediated Endocytic Pathway. Meiyu Jia,Mingxia Sun,Yan Dong Tang,Yu Yuan Zhang,Haiwei Wang,Xuehui Cai,Fandan Meng. 2022

[4]An Expeditious Neutralization Assay for Porcine Reproductive and Respiratory Syndrome Virus Based on a Recombinant Virus Expressing Green Fluorescent Protein. Wang, Juan,Yan, Jiecong,Wang, Shuaiyong,Chen, Ronglin,Xing, Yanru,Liu, Qingyan,Gao, Shuolei,Zhu, Yuxiang,Li, Jiannan,Zhou, Yanjun,Shan, Tongling,Tong, Wu,Zheng, Hao,Kong, Ning,Jiang, Yifeng,Liu, Changlong,Tong, Guangzhi,Yu, Hai. 2024

作者其他论文 更多>>