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Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13
Severe acute respiratory syndrome (SARS) is an infectious disease with a strong potential for transmission upon close personal contact and is caused by the SARS-coronavirus (CoV). However, there are no natural or synthetic compounds currently available that can inhibit SARS-CoV. We examined the inhi...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier Ltd.
2012
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127438/ https://www.ncbi.nlm.nih.gov/pubmed/22578462 http://dx.doi.org/10.1016/j.bmcl.2012.04.081 |
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author | Yu, Mi-Sun Lee, June Lee, Jin Moo Kim, Younggyu Chin, Young-Won Jee, Jun-Goo Keum, Young-Sam Jeong, Yong-Joo |
author_facet | Yu, Mi-Sun Lee, June Lee, Jin Moo Kim, Younggyu Chin, Young-Won Jee, Jun-Goo Keum, Young-Sam Jeong, Yong-Joo |
author_sort | Yu, Mi-Sun |
collection | PubMed |
description | Severe acute respiratory syndrome (SARS) is an infectious disease with a strong potential for transmission upon close personal contact and is caused by the SARS-coronavirus (CoV). However, there are no natural or synthetic compounds currently available that can inhibit SARS-CoV. We examined the inhibitory effects of 64 purified natural compounds against the activity of SARS helicase, nsP13, and the hepatitis C virus (HCV) helicase, NS3h, by conducting fluorescence resonance energy transfer (FRET)-based double-strand (ds) DNA unwinding assay or by using a colorimetry-based ATP hydrolysis assay. While none of the compounds, examined in our study inhibited the DNA unwinding activity or ATPase activity of human HCV helicase protein, we found that myricetin and scutellarein potently inhibit the SARS-CoV helicase protein in vitro by affecting the ATPase activity, but not the unwinding activity, nsP13. In addition, we observed that myricetin and scutellarein did not exhibit cytotoxicity against normal breast epithelial MCF10A cells. Our study demonstrates for the first time that selected naturally-occurring flavonoids, including myricetin and scultellarein might serve as SARS-CoV chemical inhibitors. |
format | Online Article Text |
id | pubmed-7127438 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Elsevier Ltd. |
record_format | MEDLINE/PubMed |
spelling | pubmed-71274382020-04-08 Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13 Yu, Mi-Sun Lee, June Lee, Jin Moo Kim, Younggyu Chin, Young-Won Jee, Jun-Goo Keum, Young-Sam Jeong, Yong-Joo Bioorg Med Chem Lett Article Severe acute respiratory syndrome (SARS) is an infectious disease with a strong potential for transmission upon close personal contact and is caused by the SARS-coronavirus (CoV). However, there are no natural or synthetic compounds currently available that can inhibit SARS-CoV. We examined the inhibitory effects of 64 purified natural compounds against the activity of SARS helicase, nsP13, and the hepatitis C virus (HCV) helicase, NS3h, by conducting fluorescence resonance energy transfer (FRET)-based double-strand (ds) DNA unwinding assay or by using a colorimetry-based ATP hydrolysis assay. While none of the compounds, examined in our study inhibited the DNA unwinding activity or ATPase activity of human HCV helicase protein, we found that myricetin and scutellarein potently inhibit the SARS-CoV helicase protein in vitro by affecting the ATPase activity, but not the unwinding activity, nsP13. In addition, we observed that myricetin and scutellarein did not exhibit cytotoxicity against normal breast epithelial MCF10A cells. Our study demonstrates for the first time that selected naturally-occurring flavonoids, including myricetin and scultellarein might serve as SARS-CoV chemical inhibitors. Elsevier Ltd. 2012-06-15 2012-04-25 /pmc/articles/PMC7127438/ /pubmed/22578462 http://dx.doi.org/10.1016/j.bmcl.2012.04.081 Text en Copyright © 2012 Elsevier Ltd. All rights reserved. Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active. |
spellingShingle | Article Yu, Mi-Sun Lee, June Lee, Jin Moo Kim, Younggyu Chin, Young-Won Jee, Jun-Goo Keum, Young-Sam Jeong, Yong-Joo Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13 |
title | Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13 |
title_full | Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13 |
title_fullStr | Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13 |
title_full_unstemmed | Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13 |
title_short | Identification of myricetin and scutellarein as novel chemical inhibitors of the SARS coronavirus helicase, nsP13 |
title_sort | identification of myricetin and scutellarein as novel chemical inhibitors of the sars coronavirus helicase, nsp13 |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7127438/ https://www.ncbi.nlm.nih.gov/pubmed/22578462 http://dx.doi.org/10.1016/j.bmcl.2012.04.081 |
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