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首页> 外文期刊>Organic & biomolecular chemistry >Theoretical study on the mechanism of a ring-opening reaction of oxirane by the active-site aspartic dyad of HIV-1 protease
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Theoretical study on the mechanism of a ring-opening reaction of oxirane by the active-site aspartic dyad of HIV-1 protease

机译:HIV-1蛋白酶活性位天冬氨酸二联体对环氧乙烷开环反应机理的理论研究

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摘要

Two possible mechanisms of the irreversible inhibition of HIV-1 protease by epoxide inhibitors are investigated on an enzymatic model using ab initio (MP2) and density functional theory (DFT) methods (B3LYP, MPW1K and M05-2X). The calculations predict the inhibition as a general acid-catalyzed nucleophilic substitution reaction proceeding by a concerted S_N2 mechanism with a reaction barrier of ca. 15-21 kcal mol~(-1). The irreversible nature of the inhibition is characterized by a large negative reaction energy of ca. -17-(-24) kcal mol~(-1). A mechanism with a direct proton transfer from an aspartic acid residue of the active site onto the epoxide ring has been shown to be preferred compared to one with the proton transfer from the acid catalyst facilitated by a bridging catalytic water molecule. Based on the geometry of the transition state, structural data important for the design of irreversible epoxide inhibitors of HIV-1 protease were defined. Here we also briefly discuss differences between the epoxide ring-opening reaction in HIV-1 protease and epoxide hydrolase, and the accuracy of the DFT method used.
机译:使用从头算(MP2)和密度泛函理论(DFT)方法(B3LYP,MPW1K和M05-2X),在酶促模型上研究了环氧化物抑制剂对HIV-1蛋白酶不可逆抑制的两种可能机制。该计算预测了抑制作用,这是一般的酸催化亲核取代反应,是通过协同的S_N2机理进行的,反应势垒为ca。 15-21 kcal mol〜(-1)。抑制作用的不可逆性的特征在于,其约负的大的负反应能。 -17-(-24)大卡摩尔〜(-1)。与通过桥接催化水分子促进质子从酸催化剂的质子转移相比,具有从活性位点的天冬氨酸残基到环氧化物环上的质子直接转移的机理已被证明是优选的。基于过渡态的几何结构,定义了对设计HIV-1蛋白酶不可逆环氧抑制剂重要的结构数据。在这里,我们还简要讨论了HIV-1蛋白酶中的环氧化物开环反应和环氧化物水解酶之间的差异,以及所用DFT方法的准确性。

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