Onnamide A suppresses the severe acute respiratory syndrome-coronavirus 2 infection without inhibiting 3-chymotrypsin-like cysteine protease

Author:

Hayashi Yasuhiro1,Higa Nanami2,Yoshida Tetsuro1,Tyas Trianda Ayuning2,Mori-Yasumoto Kanami3,Yasumoto-Hirose Mina4,Tani Hideki56,Tanaka Junichi2,Jomori Takahiro2

Affiliation:

1. University of Miyazaki Faculty of Agriculture, , 1-1 Gakuen-kibanadai-nishi, Miyazaki, Miyazaki 889-2192, Japan

2. University of the Ryukyus Department of Chemistry, Biology and Marine Science, Faculty of Science, , 1-Senbaru, Nishihara, Nakagami, Okinawa 903-0213, Japan

3. Tokyo University of Science Faculty of Pharmaceutical Sciences, , 2641 Yamazaki, Noda, Chiba 278-8510, Japan

4. Tropical Technology Plus , 12-75, Suzaki, Uruma, Okinawa 904-2234, Japan

5. Department of Virology , , 17-1 Nakataikoyama, Imizu-shi, Toyama 939-0363, Japan

6. Toyama Institute of Health , , 17-1 Nakataikoyama, Imizu-shi, Toyama 939-0363, Japan

Abstract

Abstract Given the continuous emergence of new variants of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the development of new inhibitors is necessary to enhance clinical efficacy and increase the options for combination therapy for the coronavirus disease 2019. Because marine organisms have been a resource for the discovery of numerous bioactive molecules, we constructed an extract library of marine invertebrates collected from the Okinawa Islands. In this study, the extracts were used to identify antiviral molecules against SARS-CoV-2. Using a cytopathic effect (CPE) assay in VeroE6/TMPRSS2 cells, an extract from the marine sponge Theonella swinhoei was found to reduce virus-induced CPE. Eventually, onnamide A was identified as an antiviral compound in the extract using column chromatography and NMR analysis. Onnamide A inhibited several SARS-CoV-2 variant-induced CPEs in VeroE6/TMPRSS2 cells as well as virus production in the supernatant of infected cells. Moreover, this compound blocked the entry of SARS-CoV-2 pseudo-virions. Taken together, these results demonstrate that onnamide A suppresses SARS-CoV-2 infection, which may be partially related to entry inhibition, and is expected to be a candidate lead compound for the development of anti-SARS-CoV-2 drugs.

Funder

Grant-in-Aid for Scientific Research

Publisher

Oxford University Press (OUP)

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