Centre for Computational Chemistry, School of Chemistry , University of Bristol , Bristol BS8 1TS , U.K.
J Phys Chem B. 2019 Apr 4;123(13):2889-2903. doi: 10.1021/acs.jpcb.9b02157. Epub 2019 Mar 15.
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-Barré 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. Therefore, the computational approaches presented here are helpful for further designing of NS2B/NS3 inhibitors based on transition-state analogues.
Zika 病毒(ZIKV)主要通过埃及伊蚊属的蚊子传播给人类,与严重的病理紊乱有关,包括新生儿小头畸形和成人吉兰-巴雷综合征。目前,尚无预防或控制 ZIKV 感染的疫苗或抗 ZIKV 药物。ZIKV 治疗的一个有吸引力的药物靶点是一种由两个隔室(NS2B/NS3)丝氨酸蛋白酶,它在感染过程中处理病毒多蛋白。在这里,用传统分子动力学模拟 ZIKV 蛋白酶与 NS2B 末端 C 端肽底物(TGKRS)序列的复合物表明,底物处于 ZIKV 蛋白酶切割反应的活性构象。酰化反应的混合量子力学/分子力学(QM/MM)伞抽样模拟(PM6/ff14SB)表明,质子从 S135 转移到 H51 和 S135 对底物的亲核攻击是协同的。限速步骤涉及到四面体中间体的形成。此外,还进行了单点能量 QM/MM 计算(在耦合簇理论(LCCSD(T)/(aug)-cc-pVTZ)的水平上),以校正酰化过程第一步的势能曲线。在这一理论水平上计算出的平均活化能垒为 16.3 kcal/mol。因此,这里提出的计算方法有助于进一步设计基于过渡态类似物的 NS2B/NS3 抑制剂。