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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Quantum Mechanics/Molecular Mechanics (QM/MM) Calculations Support a Concerted Reaction Mechanism for the Zika Virus NS2B/NS3 Serine Protease with Its Substrate
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Quantum Mechanics/Molecular Mechanics (QM/MM) Calculations Support a Concerted Reaction Mechanism for the Zika Virus NS2B/NS3 Serine Protease with Its Substrate

机译:量子力学/分子力学(QM / mm)计算支持Zika病毒NS2B / NS3丝氨酸蛋白酶的一致反应机制,其基材

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Zika virus (ZIKV) is mainly transmitted to humans by Aedes species mosquitoes and is associated with serious pathological disorders including microcephaly in newborns and Guillain-Barre syndrome in adults. Currently, there is no vaccine or anti-ZIKV drug available for preventing or controlling ZIKV infection. An attractive drug target for ZIKV treatment is a two-compartment (NS2B/NS3) serine protease that processes viral polyprotein during infection. Here, conventional molecular dynamics simulations of the ZIKV protease in complex with peptide substrate (TGKRS) sequence at the C-terminus of NS2B show that the substrate is in the active conformation for the cleavage reaction by ZIKV protease. Hybrid quantum mechanics/molecular mechanics (QM/MM) umbrella sampling simulations (PM6/ff14SB) of acylation results reveal that proton transfer from S135 to H51 and nucleophilic attack on the substrate by S135 are concerted. The rate-limiting step involves the formation of a tetrahedral intermediate. In addition, the single-point energy QM/MM calculations, precisely at the level of coupled cluster theory (LCCSD(T)/(aug)-cc-pVTZ), were performed to correct the potential energy profiles for the first step of the acylation process. The average computed activation barrier at this level of theory is 16.3 kcal mol(-1). Therefore, the computational approaches presented here are helpful for further designing of NS2B/NS3 inhibitors based on transition-state analogues.
机译:Zika病毒(ZIKV)主要由AEDES物种蚊子传播给人类,并且与成人的新生儿和Guillain-Barre综合征在内的严重病理疾病有关。目前,没有可用于预防或控制ZIKV感染的疫苗或抗ZIKV药物。 ZIKV治疗的有吸引力的药物靶标是在感染期间处理病毒多蛋白的两室(NS2B / NS3)丝氨酸蛋白酶。这里,在NS2B的C-末端的肽基质(TGKR)序列中ZIKV蛋白酶的常规分子动力学模拟在NS2B的C-末端显示,基材是通过ZIKV蛋白酶切割反应的主动构象。酰化结果的混合量子力学/分子力学(QM / mm)伞形取样模拟(PM6 / FF14SB)揭示了S135至H51的质子转移和S135对基板上的亲核攻击。速率限制步骤涉及形成四面体中间体。另外,单点能量QM / MM计算,恰恰在耦合簇理论(LCCSD(T)/(AUG)-CC-pVTZ)的电平,进行修正潜在能量简档的所述第一步骤酰化过程。这种理论水平的平均计算的激活屏障是16.3千卡摩尔(-1)。因此,这里呈现的计算方法有助于基于过渡状态类似物进一步设计NS2B / NS3抑制剂。

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