TY - JOUR
T1 - Identification of a novel compound with antiviral activity against influenza A virus depending on PA subunit of viral RNA polymerase
AU - Yamada, Kazunori
AU - Koyama, Hiroko
AU - Hagiwara, Kyoji
AU - Ueda, Atsushi
AU - Sasaki, Yutaka
AU - Kanesashi, Shin nosuke
AU - Ueno, Ryuki
AU - Nakamura, Hironori K.
AU - Kuwata, Kazuo
AU - Shimizu, Kazufumi
AU - Suzuki, Masaaki
AU - Aida, Yoko
N1 - Funding Information:
We thank Drs. H. Kida, Kawaoka, Y. Sukenaga, H. Shinbo, and T. Honma for the kind gifts of viruses, plasmids and drugs. We also thank Ms. N. Honda and Drs. T. Zako, Y. Kondoh, H. Osada, H. Ogawa, and K. Imai for useful discussions and assistance. We are grateful to the Support Unit for Bio-material Analysis, RIKEN BSI Research Resources Center, for help with sequence analysis. We also thank the Life Science Research Center, Gifu University, for use of the facilities. This study was supported in part by the Japan Advanced Molecular Imaging Program and the RIKEN Program for Drug Discovery and Medical Technology Platforms.
PY - 2012/8
Y1 - 2012/8
N2 - Influenza viruses have developed resistance to current drugs, creating a need for new antiviral targets and new drugs to treat influenza virus infections. In this study, computational and experimental screening of an extensive compound library identified THC19, which was able to suppress influenza virus replication. This compound had no cytotoxic effects and did not disrupt cell cycle progression or induce apoptosis in MDCK cells as confirmed by WST-1 assays, flow cytometry analysis, and caspase-3 assays. Time-of-addition experiments showed that THC19 acts at a relatively early stage of the viral lifecycle. Subsequent mini-genome assays revealed that THC19 inhibited viral genome replication and/or transcription, suggesting that it interferes with one or more of the viral components that form the ribonucleoprotein complexes, namely polymerase basic 2 (PB2), polymerase basic 1 (PB1), polymerase acidic (PA), nucleoprotein (NP) and viral RNA. Finally, mini-genome assays where PB2, PB1, PA or NP from A/WSN/33 (H1N1) virus were replaced with those from A/Udorn/307/1972 (H3N2) virus effectively demonstrated that THC19 inhibited viral multiplication in a manner dependent upon the PA subunit. Taken together, these results suggest that influenza virus PA protein is a potential target for, and may aid the development of, novel compounds that inhibit influenza A virus replication.
AB - Influenza viruses have developed resistance to current drugs, creating a need for new antiviral targets and new drugs to treat influenza virus infections. In this study, computational and experimental screening of an extensive compound library identified THC19, which was able to suppress influenza virus replication. This compound had no cytotoxic effects and did not disrupt cell cycle progression or induce apoptosis in MDCK cells as confirmed by WST-1 assays, flow cytometry analysis, and caspase-3 assays. Time-of-addition experiments showed that THC19 acts at a relatively early stage of the viral lifecycle. Subsequent mini-genome assays revealed that THC19 inhibited viral genome replication and/or transcription, suggesting that it interferes with one or more of the viral components that form the ribonucleoprotein complexes, namely polymerase basic 2 (PB2), polymerase basic 1 (PB1), polymerase acidic (PA), nucleoprotein (NP) and viral RNA. Finally, mini-genome assays where PB2, PB1, PA or NP from A/WSN/33 (H1N1) virus were replaced with those from A/Udorn/307/1972 (H3N2) virus effectively demonstrated that THC19 inhibited viral multiplication in a manner dependent upon the PA subunit. Taken together, these results suggest that influenza virus PA protein is a potential target for, and may aid the development of, novel compounds that inhibit influenza A virus replication.
KW - Antiviral agents
KW - Influenza a virus
KW - Mini-genome assay
KW - Polymerase acidic (PA)
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U2 - 10.1016/j.micinf.2012.02.012
DO - 10.1016/j.micinf.2012.02.012
M3 - Article
C2 - 22441116
AN - SCOPUS:84863102609
SN - 1286-4579
VL - 14
SP - 740
EP - 747
JO - Microbes and Infection
JF - Microbes and Infection
IS - 9
ER -