In silico study of coumarins and quinolines derivatives as potent inhibitors of sars-cov-2 main protease
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Yáñez, Osvaldo
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In silico study of coumarins and quinolines derivatives as potent inhibitors of sars-cov-2 main protease
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Abstract
The pandemic that started in Wuhan (China) in 2019 has caused a large number of deaths,
and infected people around the world due to the absence of effective therapy against
coronavirus 2 of the severe acute respiratory syndrome (SARS-CoV-2). Viral maturation
requires the activity of the main viral protease (Mpro), so its inhibition stops the progress of
the disease. To evaluate possible inhibitors, a computational model of the SARS-CoV-2
enzyme Mpro was constructed in complex with 26 synthetic ligands derived from
coumarins and quinolines. Analysis of simulations of molecular dynamics and molecular
docking of the models show a high affinity for the enzyme (ΔEbinding between −5.1 and
7.1 kcal mol−1). The six compounds with the highest affinity show Kd between 6.26 × 10–6
and 17.2 × 10–6, with binding affinity between −20 and −25 kcal mol−1, with ligand efficiency
less than 0.3 associated with possible inhibitory candidates. In addition to the high
affinity of these compounds for SARS-CoV-2 Mpro, low toxicity is expected considering
the Lipinski, Veber and Pfizer rules. Therefore, this novel study provides candidate
inhibitors that would allow experimental studies which can lead to the development of
new treatments for SARS-CoV-2.
Patrocinador
Ministry of Education
Ministry of Industry, Commerce and Tourism
ICETEX, Programme Ecosistema Cientifico-Colombia Cientifica
Francisco Jose de Caldas Fund RC-FP44842-212-2018
ANID/PIA/ACT192144
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Artículo de publícación WoS Artículo de publicación SCOPUS
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Frontiers in Chemistry, February 2021, Volume 8, Article 595097
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