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Interaction of HIV-1 aspartic protease with its inhibitor by molecular dynamics and ab initio fragment molecular orbital method

机译:通过分子动力学和从头算片段分子轨道方法研究HIV-1天冬氨酸蛋白酶与其抑制剂的相互作用

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摘要

For the three complex crystal structures of HIV-1 aspartic protease (an enzyme of AIDS) with its inhibitor in the Protein Data Bank, molecular dynamics of the generalized Born surface area and the ab initio fragment molecular orbital of an ABINIT-MP calculation was performed to obtain the binding free energy, the molecular orbital energy, the interaction energy of residues with an inhibitor and the charge transfer at the active site. The inhibitors are five symmetric cyclic ureas, of which three were modelled, and an asymmetric dipeptide. The interaction energy of the inhibitor at the active sites of aspartic acid is as great as 50 kcal mol−1, coinciding with a tetrahedral transition state. For the inhibitor with a higher affinity, charge was transferred to the inhibitor from the active site. The difference in symmetry of the inhibitor was not evident. Binding free energy corresponds to the experimental value of the binding constant, while molecular orbital energy does not always, which is considered to be an entropy effect.
机译:对于蛋白质数据库中HIV-1天冬氨酸蛋白酶(艾滋病的一种酶)及其抑制剂的三个复杂晶体结构,进行了ABORIT-MP计算的广义Born表面积的分子动力学和从头算片段分子轨道以获得结合自由能,分子轨道能,残基与抑制剂的相互作用能以及活性位点的电荷转移。抑制剂是5种对称环脲,其中3种已被建模,以及一种不对称二肽。抑制剂在天冬氨酸活性部位的相互作用能高达50 kcal mol -1 ,与四面体过渡态一致。对于具有较高亲和力的抑制剂,电荷从活性位点转移至抑制剂。抑制剂的对称性差异不明显。结合自由能对应于结合常数的实验值,而分子轨道能量并不总是如此,这被认为是熵效应。

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