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Sub-Cellular Biochemistry|June 15, 2018
Structure and Function of Influenza Virus RibonucleoproteinChun-Yeung Lo, Yun-Sang Tang, Pang-Chui ShawViruses|February 28, 2023
Functional Importance of the Hydrophobic Residue 362 in Influenza A PB1 SubunitJohnson Jor-Shing Chan, Yun-Sang Tang, Chun-Yeung Lo, et al.Journal of Ethnopharmacology|February 22, 2020
Anti-influenza virus phytochemicals from Radix Paeoniae Alba and characterization of their neuraminidase inhibitory activitiesTianbo Zhang, Chun-Yeung Lo, Mengjie Xiao, et al.Journal of Virology|March 1, 2019
The Extended C-Terminal Region of Influenza C Virus Nucleoprotein Is Important for Nuclear Import and Ribonucleoprotein ActivityYun-Sang Tang, Chun-Yeung Lo, Chris Ka-Pun Mok, et al.Plos One|January 17, 2018
Amino acid substitutions affecting aspartic acid 605 and valine 606 decrease the interaction strength between the influenza virus RNA polymerase PB2 '627' domain and the viral nucleoproteinHo-Pan Hsia, Yin-Hua Yang, Wun-Chung Szeto, et al.Antiviral Research|June 21, 2017
Identification of influenza polymerase inhibitors targeting polymerase PB2 cap-binding domain through virtual screeningMing Liu, Chun-Yeung Lo, Guoxin Wang, et al.European Journal of Medicinal Chemistry|September 6, 2023
Anti-influenza virus activities and mechanism of antrafenine analogsYun-Sang Tang, Chao Zhang, Chun-Yeung Lo, et al.Scientific Reports|February 4, 2018
Identification of influenza polymerase inhibitors targeting C-terminal domain of PA through surface plasmon resonance screeningChun-Yeung Lo, Olive Tin-Wai Li, Wen-Ping Tang, et al.Pageof 1