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Novel HIV integrase inhibitors with anti-HIV activity: insights into integrase inhibition from docking studies

机译:具有抗HIV活性的新型HIV整合酶抑制剂:对接研究对整合酶抑制的见解

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The mechanism of integrase is generally accepted to be dependant on the presence of two divalent metal ions in the active site. However, the only available crystal structures of HIV-1 integrase contain either one or no metal ions, hampering structure-based design studies of integrase inhibitors. For this reason, a two-metal ion model of integrase was constructed. This model was used for computational docking studies with novel dike-toacid integrase inhibitors containing pyrimidine nucleobase scaffolds. The docking protocol allowed for some steric contact between the liqand and protein during docking simulations, which implicitly accounted for potential conforma-jonal changes in the protein as a result of binding ral DNA or the ligand. The results suggest that the aromatic rings in these diketo acids bind to regions close to the viral DNA and may interfere with mobility of a vital catalytic loop. The docking data also suggest that the ligand can be prevented from adopting a favourable conformation by changes in the relative orientation of its diketo side-chain and aromatic rings. The docked pose of each of the active compounds coordinated both of the metal ions present in the active site of integrase through the diketo acid functionality of these compounds. This result is more consistent with theoretical data on inhibitor mechanism, and thus recommends this docking approach over rigid use of one-metal ion models derived from current crystal structures of integrase.
机译:通常认为整合酶的机理取决于活性位点中两个二价金属离子的存在。但是,HIV-1整合酶的唯一可用晶体结构不包含一个金属离子,也可以不包含任何金属离子,这阻碍了基于结构的整合酶抑制剂的设计研究。因此,构建了整合酶的两种金属离子模型。该模型用于与新型的含嘧啶核苷支架的二酮-酸整合酶抑制剂的计算对接研究。对接方案允许在对接模拟过程中配体与蛋白质之间发生空间接触,这暗含了由于结合了DNA或配体而导致蛋白质潜在的共形-接头变化的原因。结果表明,这些二酮酸中的芳环结合到病毒DNA附近的区域,并可能干扰重要催化环的迁移。对接数据还表明,可以通过改变其二酮侧链和芳环的相对方向来防止该配体采用有利的构象。每种活性化合物的对接位姿通过这些化合物的二酮酸官能团配位在整合酶活性位点中存在的两种金属离子。该结果与抑制剂机理的理论数据更加吻合,因此建议使用这种对接方法,而不要严格使用源自整合酶当前晶体结构的单金属离子模型。

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