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首页> 外文期刊>Medicinal Chemistry >Free Energy Perturbation Calculations on Glucosidase-Inhibitor Complexes
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Free Energy Perturbation Calculations on Glucosidase-Inhibitor Complexes

机译:葡萄糖苷酶-抑制剂复合物的自由能扰动计算

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摘要

Free energy perturbation studies have been performed on Glucoamylase II (471) from Aspergillus awamori var. X100 complexed with three different inhibitors: (+)lentiginosine, (+)(1S,2S,7R,8aS) 1,2,7-trihydroxyindolizidine, (+)(1S,2S,7S,8aS) 1,2,7-trihydroxyindolizidine and the inactive compound (+)(1S,7R,8aS)-1,7-dihydroxyindolizidine. Molecular dynamic simulations were carried out using a recently developed procedure for fast Free Energy Perturbation calculations. In this procedure only a sphere of 1.8 nm around the central atom of the inhibitor is considered in the calculations. Crystallographic restraints are applied over this reduced system using a generated electron density map. The obtained values for the free energy differences agree with experimental data showing the importance of fast calculations in drug design even when the crystallographic structure of the complex is not available. As the method uses only the crystallographic structure of the receptor, it is possible to test the possible efficiency of even still not synthesised ligands, making the pre-selection of compounds much easy and faster.
机译:对来自泡盛曲霉的葡糖淀粉酶II(471)进行了自由能摄动研究。 X100与三种不同的抑制剂络合:(+)lentiginosine,(+)(1S,2S,7R,8aS)1,2,7-三羟基吲哚并咪唑((+)(1S,2S,7S,8aS)1,2,7-三羟基吲哚啶和非活性化合物(+)(1S,7R,8aS)-1,7-二羟基吲哚啶。分子动力学模拟是使用最近开发的程序进行的,用于快速自由能扰动计算。在该程序中,在计算中仅考虑抑制剂中心原子周围1.8 nm的球体。使用生成的电子密度图将晶体学约束施加到此还原系统上。所获得的自由能差值与实验数据吻合,表明即使在没有配合物的晶体结构的情况下,快速计算在药物设计中也很重要。由于该方法仅使用受体的晶体结构,因此可以测试甚至尚未合成的配体的可能效率,从而使化合物的预选变得更加轻松快捷。

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