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Acta Virologica|April 5, 2022
RPS3-induced antiviral cytokines inhibit the proliferation of classical swine fever virusDi Zhao, Liang Zhang, Mengzhao Song, et al.Viruses|May 28, 2025
PKM2 Facilitates Classical Swine Fever Virus Replication by Enhancing NS5B Polymerase FunctionMengzhao Song, Shanchuan Liu, Yan Luo, et al.Veterinary Microbiology|January 29, 2023
25-hydroxycholesterol inhibits classical swine fever virus entry into porcine alveolar macrophages by depleting plasma membrane cholesterolLiang Zhang, Yanyan Yi, Tao Wang, et al.Veterinary Microbiology|July 2, 2020
Rab1b-GBF1-ARFs mediated intracellular trafficking is required for classical swine fever virus replication in swine umbilical vein endothelial cellsLiang Zhang, Tao Wang, Mengzhao Song, et al.Virulence|May 19, 2020
Rab18 binds to classical swine fever virus NS5A and mediates viral replication and assembly in swine umbilical vein endothelial cellsLiang Zhang, Di Zhao, Mingxing Jin, et al.Journal of Virology|January 19, 2022
ARF1 with Sec7 Domain-Dependent GBF1 Activates Coatomer Protein I To Support Classical Swine Fever Virus EntryLiang Zhang, Tao Wang, Yanyan Yi, et al.Veterinary Microbiology|March 15, 2021
ARFGAP1 binds to classical swine fever virus NS5A protein and enhances CSFV replication in PK-15 cellsLiang Zhang, Mingxing Jin, Mengzhao Song, et al.Journal of Virology|June 3, 2025
COP I vesicles facilitate classical swine fever virus proliferation by transporting fatty acid synthase from the Golgi apparatus to the endoplasmic reticulumLiang Zhang, Tao Wang, Chen Chen, et al.Journal of Virology|March 3, 2026
A dual role for ER-Golgi cargo receptor LMAN1 in supporting CSFV replication and restraining RLR signalingKailiang Han, Zhaoyu Chang, Ning Li, et al.Autophagy|November 6, 2021
Extracellular vesicles originating from autophagy mediate an antibody-resistant spread of classical swine fever virus in cell cultureTao Wang, Liang Zhang, Wulong Liang, et al.Pageof 2