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Rupintrivir is a promising candidate for treating severe cases of Enterovirus-71 infection 被引量:11
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作者 Zhang, Xiao-Nan Song, Zhi-Gang +3 位作者 Jiang, Ting Shi, Bi-Sheng Hu, Yun-Wen Yuan, Zheng-Hong 《World Journal of Gastroenterology》 SCIE CAS CSCD 2010年第2期201-209,共9页
AIM:To evaluate the suitability of rupintrivir against Enterovirus 71(EV71)induced severe clinical symptoms using computational methods. METHODS:The structure of EV71 3C protease was predicted by homology modeling.The... AIM:To evaluate the suitability of rupintrivir against Enterovirus 71(EV71)induced severe clinical symptoms using computational methods. METHODS:The structure of EV71 3C protease was predicted by homology modeling.The binding free energies between rupintrivir and EV71 3C and human rhinovirus 3C protease were computed by molecular dynamics and molecular mechanics Poisson-Boltzmann/ surface area and molecular mechanics generalized-born/ surface area methods.EV71 3C fragments obtained from clinical samples collected during May to July 2008 in Shanghai were amplified by reverse-transcription and polymerase chain reaction and sequenced. RESULTS:We observed that rupintrivir had favorable binding affinity with EV71 3C protease(-10.76 kcal/mol). The variability of the 3C protein sequence in isolates of various outbreaks,including those obtained in our hospital from May to July 2008,were also analyzed to validate the conservation of the drug binding pocket. CONCLUSION:Rupintrivir,whose safety profiles had been proved,is an attractive candidate and can be quickly utilized for treating severe EV71 infection. 展开更多
关键词 Rupintrivir Hand foot and mouth disease molecular mechanics Poisson-Boltzmann/surface area molecular mechanics generalized-born/surface area Homology modeling PICORNAVIRUS
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基于分子动力学模拟提高嗜热磷酸三酯酶样内酯酶非特异性底物活力的理论研究
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作者 朱镜璇 于正飞 +4 位作者 刘野 詹冬玲 韩佳睿 田晓翩 韩葳葳 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2019年第1期138-146,共9页
采用分子动力学模拟和拉伸分子动力学模拟方法,结合分子力学-广义玻恩表面积(MM-GB/SA)方法进行自由能计算和结构交互指纹分析,研究了模拟过程中非特异性底物(对氧磷/内酯)分别与嗜热磷酸三酯酶样内酯酶(SsoPox)野生型和突变体(W263F/W2... 采用分子动力学模拟和拉伸分子动力学模拟方法,结合分子力学-广义玻恩表面积(MM-GB/SA)方法进行自由能计算和结构交互指纹分析,研究了模拟过程中非特异性底物(对氧磷/内酯)分别与嗜热磷酸三酯酶样内酯酶(SsoPox)野生型和突变体(W263F/W263T)结合的构象变化,分析了Loop8中重要残基Trp263的突变提高SsoPox非特异性底物活力的原因,发现其能够影响门控残基Phe229的构象变化,导致活性口袋入口变宽(Phe229与Tyr99之间的距离变大),使对氧磷和内酯更容易结合到蛋白质的活性位点上; Asp256和Arg223形成盐桥的几率高于野生型(WT) SsoPox,在Arg223(位于Loop7)的协助下质子更加高效地从活性中心的Asp256(位于Loop8)传递到溶剂中去,因而能够提高SsoPox水解底物的效率.通过比较2个野生型复合物的结构稳定性和结合自由能差异,发现在模拟过程中SsoPox与内酯的复合物体系更加稳定并且具有更低的结合自由能,有利于SsoPox识别底物并使其埋在活性部位的疏水环境中,促进氢氧化物亲核进攻底物的亲电中心.因此,底物与酶稳定的相互作用可能是SsoPox具有天然内酯酶活性的原因之一. 展开更多
关键词 嗜热类磷酸三酯酶样内酯酶 分子动力学模拟 拉伸分子动力学模拟 分子力学-广义玻恩表面积 结构交互指纹分析
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