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新型冠状病毒非结构蛋白NSP13通过调控IκBα蛋白降解抑制NF-κB信号通路
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作者 闫聪睿 安华英 +10 位作者 马骏 巩家媛 高锋华 宁畅文 张猛 李宝义 苏允琦 魏汉琪 刘鹏宇 蒋兴伟 于群 《中国药理学与毒理学杂志》 CAS 北大核心 2023年第4期256-262,共7页
目的研究新型冠状病毒非结构蛋白13(NSP13)调控NF-κB信号通路的作用机制。方法利用GV367-NSP13-FLAG慢病毒感染的方法制备高表达NSP13的A549细胞(A549-NSP13)和A549对照组,用实时荧光定量PCR(RT-qPCR)和ELISA检测NF-κB下游细胞因子白... 目的研究新型冠状病毒非结构蛋白13(NSP13)调控NF-κB信号通路的作用机制。方法利用GV367-NSP13-FLAG慢病毒感染的方法制备高表达NSP13的A549细胞(A549-NSP13)和A549对照组,用实时荧光定量PCR(RT-qPCR)和ELISA检测NF-κB下游细胞因子白细胞介素6(IL-6)和趋化因子5(CCL-5)表达水平;Western印迹法检测NF-κB信号通路P65、磷酸化P65和NF-κB抑制因子α(IκBα)蛋白表达。放线菌酮10 mg·L^(-1)处理细胞0,15,30,45,90和120 min,Western印迹法检测IκBα蛋白半衰期。结果与A549对照组相比,A549-NSP13细胞检测到FLAG标签蛋白条带,且NSP13 mRNA表达显著上调(P<0.01),表明A549-NSP13细胞系构建成功。与A549对照组相比,A549-NSP13细胞IL-6 mRNA和蛋白表达水平(P<0.01)及CCL-5 mRNA和蛋白表达水平(P<0.05,P<0.01)均显著降低;磷酸化P65蛋白表达下降(P<0.01),而IκBα蛋白表达上调(P<0.01);且IκBα蛋白半衰期增加(P<0.01)。结论NSP13蛋白可通过抑制IκBα降解进而抑制NF-κB信号通路的活化并降低其下游IL-6和CCL-5等炎症相关分子产生和分泌。 展开更多
关键词 新型冠状病毒 非结构蛋白13 NF-ΚB信号通路 NF-κB抑制因子α蛋白
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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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