Chalcones from Angelica keiskei (ashitaba) inhibit key Zika virus replication proteins
[Display omitted] •Docking studies suggested chalcones could inhibit the ZIKV NS3 protease and NS5 polymerase.•The chalcones 4-HD, XA, and XA-E inhibited the ZIKV NS3 protease.•XA displayed inhibitory activity in an assay designed to measure the activity of the ZIKV NS5 RdRp.•The chalcones 4-HD and...
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Veröffentlicht in: | Bioorganic chemistry 2022-03, Vol.120, p.105649-105649, Article 105649 |
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•Docking studies suggested chalcones could inhibit the ZIKV NS3 protease and NS5 polymerase.•The chalcones 4-HD, XA, and XA-E inhibited the ZIKV NS3 protease.•XA displayed inhibitory activity in an assay designed to measure the activity of the ZIKV NS5 RdRp.•The chalcones 4-HD and XA-E displayed anti-ZIKV activity and low cytotoxicity.
Zika virus (ZIKV) is a dangerous human pathogen and no antiviral drugs have been approved to date. The chalcones are a group of small molecules that are found in a number of different plants, including Angelica keiskei Koidzumi, also known as ashitaba. To examine chalcone anti-ZIKV activity, three chalcones, 4-hydroxyderricin (4HD), xanthoangelol (XA), and xanthoangelol-E (XA-E), were purified from a methanol-ethyl acetate extract from A. keiskei. Molecular and ensemble docking predicted that these chalcones would establish multiple interactions with residues in the catalytic and allosteric sites of ZIKV NS2B-NS3 protease, and in the allosteric site of the NS5 RNA-dependent RNA-polymerase (RdRp). Machine learning models also predicted 4HD, XA and XA-E as potential anti-ZIKV inhibitors. Enzymatic and kinetic assays confirmed chalcone inhibition of the ZIKV NS2B-NS3 protease allosteric site with IC50s from 18 to 50 µM. Activity assays also revealed that XA, but not 4HD or XA-E, inhibited the allosteric site of the RdRp, with an IC50 of 6.9 µM. Finally, we tested these chalcones for their anti-viral activity in vitro with Vero cells. 4HD and XA-E displayed anti-ZIKV activity with EC50 values of 6.6 and 22.0 µM, respectively, while XA displayed relatively weak anti-ZIKV activity with whole cells. With their simple structures and relative ease of modification, the chalcones represent attractive candidates for hit-to-lead optimization in the search of new anti-ZIKV therapeutics. |
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ISSN: | 0045-2068 1090-2120 |
DOI: | 10.1016/j.bioorg.2022.105649 |