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Viruses|March 1, 2019
Duck Plague Virus Promotes DEF Cell Apoptosis by Activating Caspases, Increasing Intracellular ROS Levels and Inducing Cell Cycle S-Phase ArrestChuankuo Zhao, Mingshu Wang, Anchun Cheng, et al.Poultry Science|March 28, 2019
Expression and purification of the truncated duck DTMUV NS5 protein and the subcellular localization of NS5 in vitroYanping Duan, Miao Zeng, Wei Zhang, et al.International Journal of Biological Macromolecules|December 26, 2024
DHAV-1 3C protein promotes viral proliferation by antagonizing type I interferon via upregulating the ANXA2 proteinRuinan Zhang, Mingshu Wang, Anchun Cheng, et al.Frontiers in Microbiology|February 20, 2025
The functions of herpesvirus shuttling proteins in the virus lifecycleHuijun Cao, Mingshu Wang, Anchun Cheng, et al.Veterinary Research|October 27, 2024
N-glycosylation of the envelope glycoprotein I is essential for the proliferation and virulence of the duck plague virusYaru Ning, Mingshu Wang, Anchun Cheng, et al.Veterinary Microbiology|June 17, 2025
Cooperative nuclear import of duck plague virus DNA polymerase subunits: pUL42 NLS Enhances pUL30 nuclear import and viral replication, with VP22 as a compensatory factorYuxi Cui, Mingshu Wang, Anchun Cheng, et al.Poultry Science|October 12, 2025
Pioneering discovery: US3-phosphorylated sites on VP22 orchestrate duck plague virus release and pathogenicityLiping Wu, Anchun Cheng, Mingshu Wang, et al.Frontiers in Immunology|July 31, 2023
Secretory pathways and multiple functions of nonstructural protein 1 in flavivirus infectionSenzhao Zhang, Yu He, Zhen Wu, et al.Virology|May 29, 2019
Genetically stable reporter virus, subgenomic replicon and packaging system of duck Tembusu virus based on a reverse genetics systemYu He, Peng Liu, Tao Wang, et al.Virology Journal|November 16, 2019
The 164 K, 165 K, and 167 K residues of VP1 are vital for goose parvovirus proliferation in GEFs based on PCR-based reverse genetics systemPeng Liu, Liqin Yang, Jingyue Zhang, et al.Pageof 21