Cargando…
Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs
Oseltamivir is a widely used influenza virus neuraminidase (NA) inhibitor that prevents the release of new virus particles from host cells. However, oseltamivir-resistant strains have emerged, but effective drugs against them have not yet been developed. Elucidating the binding mechanisms between NA...
Autores principales: | , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9401145/ https://www.ncbi.nlm.nih.gov/pubmed/35901128 http://dx.doi.org/10.1371/journal.pcbi.1010343 |
_version_ | 1784772905495691264 |
---|---|
author | Tao, Jiaye Wang, Heping Wang, Wenjian Mi, Na Zhang, Wei Wen, Qiujia Ouyang, Jiajing Liang, Xinyun Chen, Min Guo, Wentao Li, Guoming Liu, Jun Zhao, Hanning Wang, Xin Li, Xuemeng Feng, Shengjun Liu, Xinguang He, Zhiwei Zhao, Zuguo |
author_facet | Tao, Jiaye Wang, Heping Wang, Wenjian Mi, Na Zhang, Wei Wen, Qiujia Ouyang, Jiajing Liang, Xinyun Chen, Min Guo, Wentao Li, Guoming Liu, Jun Zhao, Hanning Wang, Xin Li, Xuemeng Feng, Shengjun Liu, Xinguang He, Zhiwei Zhao, Zuguo |
author_sort | Tao, Jiaye |
collection | PubMed |
description | Oseltamivir is a widely used influenza virus neuraminidase (NA) inhibitor that prevents the release of new virus particles from host cells. However, oseltamivir-resistant strains have emerged, but effective drugs against them have not yet been developed. Elucidating the binding mechanisms between NA and oseltamivir may provide valuable information for the design of new drugs against NA mutants resistant to oseltamivir. Here, we conducted large-scale (353.4 μs) free-binding molecular dynamics simulations, together with a Markov State Model and an importance-sampling algorithm, to reveal the binding process of oseltamivir and NA. Ten metastable states and five major binding pathways were identified that validated and complemented previously discovered binding pathways, including the hypothesis that oseltamivir can be transferred from the secondary sialic acid binding site to the catalytic site. The discovery of multiple new metastable states, especially the stable bound state containing a water-mediated hydrogen bond between Arg118 and oseltamivir, may provide new insights into the improvement of NA inhibitors. We anticipated the findings presented here will facilitate the development of drugs capable of combating NA mutations. |
format | Online Article Text |
id | pubmed-9401145 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-94011452022-08-25 Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs Tao, Jiaye Wang, Heping Wang, Wenjian Mi, Na Zhang, Wei Wen, Qiujia Ouyang, Jiajing Liang, Xinyun Chen, Min Guo, Wentao Li, Guoming Liu, Jun Zhao, Hanning Wang, Xin Li, Xuemeng Feng, Shengjun Liu, Xinguang He, Zhiwei Zhao, Zuguo PLoS Comput Biol Research Article Oseltamivir is a widely used influenza virus neuraminidase (NA) inhibitor that prevents the release of new virus particles from host cells. However, oseltamivir-resistant strains have emerged, but effective drugs against them have not yet been developed. Elucidating the binding mechanisms between NA and oseltamivir may provide valuable information for the design of new drugs against NA mutants resistant to oseltamivir. Here, we conducted large-scale (353.4 μs) free-binding molecular dynamics simulations, together with a Markov State Model and an importance-sampling algorithm, to reveal the binding process of oseltamivir and NA. Ten metastable states and five major binding pathways were identified that validated and complemented previously discovered binding pathways, including the hypothesis that oseltamivir can be transferred from the secondary sialic acid binding site to the catalytic site. The discovery of multiple new metastable states, especially the stable bound state containing a water-mediated hydrogen bond between Arg118 and oseltamivir, may provide new insights into the improvement of NA inhibitors. We anticipated the findings presented here will facilitate the development of drugs capable of combating NA mutations. Public Library of Science 2022-07-28 /pmc/articles/PMC9401145/ /pubmed/35901128 http://dx.doi.org/10.1371/journal.pcbi.1010343 Text en © 2022 Tao et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Tao, Jiaye Wang, Heping Wang, Wenjian Mi, Na Zhang, Wei Wen, Qiujia Ouyang, Jiajing Liang, Xinyun Chen, Min Guo, Wentao Li, Guoming Liu, Jun Zhao, Hanning Wang, Xin Li, Xuemeng Feng, Shengjun Liu, Xinguang He, Zhiwei Zhao, Zuguo Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs |
title | Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs |
title_full | Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs |
title_fullStr | Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs |
title_full_unstemmed | Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs |
title_short | Binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs |
title_sort | binding mechanism of oseltamivir and influenza neuraminidase suggests perspectives for the design of new anti-influenza drugs |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9401145/ https://www.ncbi.nlm.nih.gov/pubmed/35901128 http://dx.doi.org/10.1371/journal.pcbi.1010343 |
work_keys_str_mv | AT taojiaye bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT wangheping bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT wangwenjian bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT mina bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT zhangwei bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT wenqiujia bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT ouyangjiajing bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT liangxinyun bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT chenmin bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT guowentao bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT liguoming bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT liujun bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT zhaohanning bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT wangxin bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT lixuemeng bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT fengshengjun bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT liuxinguang bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT hezhiwei bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs AT zhaozuguo bindingmechanismofoseltamivirandinfluenzaneuraminidasesuggestsperspectivesforthedesignofnewantiinfluenzadrugs |