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通过比较结合能分析研究几类乙酰胆碱酯酶活性位点抑制剂的结合强度调节。

Modulation of binding strength in several classes of active site inhibitors of acetylcholinesterase studied by comparative binding energy analysis.

作者信息

Martín-Santamaría Sonsoles, Muñoz-Muriedas Jordi, Luque F Javier, Gago Federico

机构信息

Departament de Fisicoquímica, Facultat de Farmàcia, Universitat de Barcelona, Av. Diagonal 643, 08028 Barcelona, Spain.

出版信息

J Med Chem. 2004 Aug 26;47(18):4471-82. doi: 10.1021/jm049877p.

Abstract

The comparative binding energy (COMBINE) methodology has been used to identify the key residues that modulate the inhibitory potencies of three structurally different classes of acetylcholinesterase inhibitors (tacrines, huprines, and dihydroquinazolines) targeting the catalytic active site of this enzyme. The extended set of energy descriptors and the partial least-squares methodology used by COMBINE analysis on a unique training set containing all the compounds yielded an interpretable model that was able to fit and predict the activities of the whole series of inhibitors reasonably well (r2 = 0.91 and q2 = 0.76, 4 principal components). A more robust model (q2 = 0.81 and SDEP = 0.25, 3 principal components) was obtained when the same chemometric analysis was applied to the huprines set alone, but the method was unable to provide predictive models for the other two families when they were treated separately from the rest. This finding appears to indicate that the enrichment in chemical information brought about by the inclusion of different classes of compounds into a single training set can be beneficial when an internally consistent set of pharmacological data can be derived. The COMBINE model was externally validated when it was shown to predict the activity of an additional set of compounds that were not employed in model construction. Remarkably, the differences in inhibitory potency within the whole series were found to be finely tuned by the electrostatic contribution to the desolvation of the binding site and a network of secondary interactions established between the inhibitor and several protein residues that are distinct from those directly involved in the anchoring of the ligand. This information can now be used to advantage in the design of more potent inhibitors.

摘要

比较结合能(COMBINE)方法已被用于识别调节三类结构不同的乙酰胆碱酯酶抑制剂(他克林、石杉碱和二氢喹唑啉)抑制效力的关键残基,这些抑制剂作用于该酶的催化活性位点。在一个包含所有化合物的独特训练集上,COMBINE分析使用的扩展能量描述符集和偏最小二乘法产生了一个可解释的模型,该模型能够较好地拟合和预测整个系列抑制剂的活性(r2 = 0.91,q2 = 0.76,4个主成分)。当对单独的石杉碱集应用相同的化学计量分析时,获得了一个更稳健的模型(q2 = 0.81,SDEP = 0.25,3个主成分),但当将其他两个家族与其余部分分开处理时,该方法无法为它们提供预测模型。这一发现似乎表明,当可以获得一组内部一致的药理学数据时,将不同类别的化合物纳入单个训练集所带来的化学信息丰富可能是有益的。当COMBINE模型被证明能够预测一组未用于模型构建的额外化合物的活性时,它得到了外部验证。值得注意的是,发现整个系列中抑制效力的差异通过对结合位点去溶剂化的静电贡献以及抑制剂与几个蛋白质残基之间建立的二级相互作用网络进行了精细调节,这些残基与直接参与配体锚定的残基不同。这些信息现在可用于更有效抑制剂的设计。

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