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首页> 外文期刊>Journal of Medicinal Chemistry >Target recognition by catechols and beta-ketoenols: potential contribution of hydrogen bonding and Mn/Mg chelation to HIV-1 integrase inhibition.
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Target recognition by catechols and beta-ketoenols: potential contribution of hydrogen bonding and Mn/Mg chelation to HIV-1 integrase inhibition.

机译:儿茶酚和β-酮烯醇的目标识别:氢键和Mn / Mg螯合对HIV-1整合酶抑制的潜在贡献。

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摘要

Catechol and beta-ketoenol are important pharmacophores of HIV-1 integrase (IN) inhibitors. We investigated their recognition of the divalent metals, Mg and Mn, and of hydrogen bond donors (HBD) and acceptors (HBA). We used data retrieved from the Cambridge Structural Database (CSD), applying a 3-D structure-based, in silico-driven approach. We found that both biophores were stabilized by intramolecular H-bonding (IHB), which was weak in catechols and very strong in beta-ketoenols. Catechols tended to recognize environmental HBD and HBA, demonstrating their ability to make use of both hydroxyl groups to form multiple, strong intermolecular H-bonds. In contrast, beta-ketoenols stabilized by strong IHB inefficiently formed intermolecular H-bonds. beta-Ketoenolate chelated both Mg and Mn ions much more efficiently than dioxolene, which was highly selective for Mn cations. The significant differences in the ability of these two pharmacophores to bind HBD and HBA and in their ability to chelate Mg and Mn have important consequences for competitive inhibitor binding and selectivity for metals and integrase DNA-binding sites.
机译:邻苯二酚和β-酮烯醇是HIV-1整合酶(IN)抑制剂的重要药效团。我们调查了他们对二价金属Mg和Mn以及氢键供体(HBD)和受体(HBA)的识别。我们使用从剑桥结构数据库(CSD)检索到的数据,采用基于3-D结构的计算机驱动方法。我们发现,两个分子团均通过分子内氢键(IHB)得以稳定,该分子在儿茶酚中很弱,在β-酮烯醇中很强。邻苯二酚倾向于识别环境中的HBD和HBA,这表明它们利用两个羟基形成多个强大的分子间氢键的能力。相反,被强健的IHB稳定的β-酮烯醇不能有效地形成分子间的H键。 β-酮戊酸酯比二氧戊烯对镁离子和锰离子的螯合效率要高得多,后者对锰阳离子的选择性高。这两种药效基团结合HBD和HBA的能力以及它们螯合Mg和Mn的能力之间的显着差异,对竞争性抑制剂结合以及对金属和整合DNA结合位点的选择性具有重要意义。

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