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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Validation of tautomeric and protomeric binding modes by free energy calculations. A case study for the structure based optimization of D-amino acid oxidase inhibitors
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Validation of tautomeric and protomeric binding modes by free energy calculations. A case study for the structure based optimization of D-amino acid oxidase inhibitors

机译:自由能计算验证互变异构谱和素染色模式。 D-氨基酸氧化酶抑制剂结构基于结构优化的案例研究

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Optimization of fragment size d-amino acid oxidase (DAAO) inhibitors was investigated using a combination of computational and experimental methods. Retrospective free energy perturbation (FEP) calculations were performed for benzo[d]isoxazole derivatives, a series of known inhibitors with two potential binding modes derived from X-ray structures of other DAAO inhibitors. The good agreement between experimental and computed binding free energies in only one of the hypothesized binding modes strongly support this bioactive conformation. Then, a series of 1-H-indazol-3-ol derivatives formerly not described as DAAO inhibitors was investigated. Binding geometries could be reliably identified by structural similarity to benzo[d]isoxazole and other well characterized series and FEP calculations were performed for several tautomers of the deprotonated and protonated compounds since all these forms are potentially present owing to the experimental pKa values of representative compounds in the series. Deprotonated compounds are proposed to be the most important bound species owing to the significantly better agreement between their calculated and measured affinities compared to the protonated forms. FEP calculations were also used for the prediction of the affinities of compounds not previously tested as DAAO inhibitors and for a comparative structure-activity relationship study of the benzo[d]isoxazole and indazole series. Selected indazole derivatives were synthesized and their measured binding affinity towards DAAO was in good agreement with FEP predictions.
机译:使用计算和实验方法的组合研究了片段尺寸D-氨基酸氧化酶(DAAO)抑制剂的优化。对苯并[D]异恶唑衍生物进行回顾性的自由能量扰动(FEP)计算,一系列已知抑制剂,其具有来自其他DaaO抑制剂的X射线结构的两个潜在的结合模式。在仅假设的结合模式中只有一个假设的结合模式的实验和计算结合能量之间的良好一致性地支持这种生物活性构象。然后,研究了以前未描述为Daao抑制剂的一系列1-H-吲唑-3-醇衍生物。通过对苯并的结构相似性可以可靠地鉴定结合几何形状,并且对去质子化和质子化合物的几种互变异构体进行异恶唑和其他表征的系列和FEP计算,因为由于代表性化合物的实验性PKA值可能存在所有这些形式。在系列中。由于与质子化形式相比,由于其计算和测量的亲和力之间的达成明显更好的协议,提出了去质子化的化合物是最重要的界定物种。 FEP计算还用于预测先前未测试为Daao抑制剂的化合物的亲和力,并用于苯并[D]异恶唑和吲唑系列的比较结构 - 活性关系研究。合成了所选的吲唑衍生物,它们与FEP预测良好的对Daao的测量结合亲和力。

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