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通过自由能力场三维定量构效关系分析预测配体-受体结合热力学:应用于一组糖原磷酸化酶的葡萄糖类似物抑制剂

Prediction of ligand-receptor binding thermodynamics by free energy force field three-dimensional quantitative structure-activity relationship analysis: applications to a set of glucose analogue inhibitors of glycogen phosphorylase.

作者信息

Venkatarangan P, Hopfinger A J

机构信息

Laboratory of Molecular Modeling and Design (M/C-781), College of Pharmacy, University of Illinois at Chicago, 833 South Wood Street, Chicago, Illinois 60612-7231, USA.

出版信息

J Med Chem. 1999 Jun 17;42(12):2169-79. doi: 10.1021/jm980515p.

Abstract

Glucose analogue inhibitors of glycogen phosphorylase, GP, may be of clinical interest in the regulation of glycogen metabolism in diabetes. The receptor geometry of glycogen phosphorylase b, GPb, is available for structure-based design and also for the evaluation of the thermodynamics of ligand-receptor binding. Free energy force field (FEFF) 3D-QSAR analysis was used to construct ligand-receptor binding models. FEFF terms involved in binding are represented by a modified first-generation AMBER force field combined with a hydration shell solvation model. The FEFF terms are then treated as independent variables in the development of 3D-QSAR models by correlating these energy terms with experimental binding energies for a training set of inhibitors. The genetic function approximation, employing both multiple linear regression and partial least squares regression data fitting, was used to develop the FEFF 3D-QSAR models for the binding process and to scale the free energy force field for this particular ligand-receptor system. The significant FEFF energy terms in the resulting 3D-QSAR models include the intramolecular vacuum energy of the unbound ligand, the intermolecular ligand-receptor van der Waals interaction energy, and the van der Waals energy of the bound ligand. Other terms, such as the change in the stretching energy of the receptor on binding, change in the solvation energy of the system on binding, and the change in the solvation energy of the ligand on binding are also found in the set of significant FEFF 3D-QSAR models. Overall, the binding of this class of ligands to GPb is largely characterized by how well the ligand can sterically fit into the active site of the enzyme. The FEFF 3D-QSAR models can be used to estimate the binding free energy of any new analogue in substituted glucose series prior to synthesis and testing.

摘要

糖原磷酸化酶(GP)的葡萄糖类似物抑制剂在调节糖尿病患者的糖原代谢方面可能具有临床应用价值。糖原磷酸化酶b(GPb)的受体几何结构可用于基于结构的设计,也可用于评估配体 - 受体结合的热力学。采用自由能力场(FEFF)三维定量构效关系(3D - QSAR)分析来构建配体 - 受体结合模型。结合过程中涉及的FEFF项由改良的第一代AMBER力场与水化层溶剂化模型表示。然后,通过将这些能量项与一组抑制剂的实验结合能相关联,将FEFF项作为独立变量用于开发3D - QSAR模型。遗传函数近似法结合多元线性回归和偏最小二乘回归数据拟合,用于开发结合过程的FEFF 3D - QSAR模型,并对该特定配体 - 受体系统的自由能力场进行标度。所得3D - QSAR模型中的重要FEFF能量项包括未结合配体的分子内真空能、分子间配体 - 受体范德华相互作用能以及结合配体的范德华能。在重要的FEFF 3D - QSAR模型集中还发现了其他项,如结合时受体拉伸能量的变化、结合时系统溶剂化能量的变化以及结合时配体溶剂化能量的变化。总体而言,这类配体与GPb的结合很大程度上取决于配体在空间上与酶活性位点的契合程度。FEFF 3D - QSAR模型可用于在合成和测试之前估计取代葡萄糖系列中任何新类似物的结合自由能。

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