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Structural elucidation of SARS-CoV-2 vital proteins: Computational methods reveal potential drug candidates against main protease, Nsp12 polymerase and Nsp13 helicase 被引量:7
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作者 Muhammad Usman Mirza Matheus Froeyen 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2020年第4期320-328,共9页
Recently emerged SARS-CoV-2 caused a major outbreak of coronavirus disease 2019(COVID-19)and instigated a widespread fear,threatening global health safety.To date,no licensed antiviral drugs or vaccines are available ... Recently emerged SARS-CoV-2 caused a major outbreak of coronavirus disease 2019(COVID-19)and instigated a widespread fear,threatening global health safety.To date,no licensed antiviral drugs or vaccines are available against COVID-19 although several clinical trials are under way to test possible therapies.During this urgent situation,computational drug discovery methods provide an alternative to tiresome high-throughput screening,particularly in the hit-to-lead-optimization stage.Identification of small molecules that specifically target viral replication apparatus has indicated the highest potential towards antiviral drug discovery.In this work,we present potential compounds that specifically target SARS-CoV-2 vital proteins,including the main protease,Nsp12 RNA polymerase and Nsp13 helicase.An integrative virtual screening and molecular dynamics simulations approach has facilitated the identification of potential binding modes and favourable molecular interaction profile of corresponding compounds.Moreover,the identification of structurally important binding site residues in conserved motifs located inside the active site highlights relative importance of ligand binding based on residual energy decomposition analysis.Although the current study lacks experimental validation,the structural information obtained from this computational study has paved way for the design of targeted inhibitors to combat COVID-19 outbreak. 展开更多
关键词 SARS-CoV-2 COVID-19 outbreak CoV-Mpro cov-nsp12 polymerase cov-nsp13 helicase
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热激诱导新冠病毒RNA聚合酶NSP12降解及抑制病毒复制分子机制研究
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作者 那仁满都拉 《中国医药导刊》 2022年第3期197-203,共7页
据美国约翰斯霍普金斯大学的实时统计数据显示,截至2022年3月,全球新冠肺炎(COVID-19)累计确诊病例已近4.88亿例,死亡近610万例。疫情的全球肆虐已持续两年多,给世界带来了巨大影响,大多数国家的国民健康、经济和生活等诸多方面都遭受... 据美国约翰斯霍普金斯大学的实时统计数据显示,截至2022年3月,全球新冠肺炎(COVID-19)累计确诊病例已近4.88亿例,死亡近610万例。疫情的全球肆虐已持续两年多,给世界带来了巨大影响,大多数国家的国民健康、经济和生活等诸多方面都遭受了重创。2022年年初,浙江大学那仁满都拉教授团队联合许志宏研究员团队,首次发现相对温和的热激(40℃)能显著地诱导新冠病毒(SARS-CoV-2)RNA依赖的RNA聚合酶(又名NSP12)及其突变体的降解,并进一步抑制新冠病毒复制。该研究结果提示,科学合理温度下的热激治疗(热疗)或许能通过降解病毒RNA聚合酶而减少病毒复制,阻止其感染和传播,进一步抑制新冠肺炎患者的病情恶化。本研究着重从分子机制及潜在应用等方面介绍该研究成果,旨在为热疗后续更广泛、更精准的临床应用提供理论支持和指导。 展开更多
关键词 热激 新冠病毒 新冠肺炎 RNA依赖的RNA聚合酶(NSP12) 病毒复制
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