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Proposal of potent inhibitors for vitamin-D receptor based on ab initio fragment molecular orbital calculations

机译:基于AB Initio片段分子轨道计算的维生素-D受体有效抑制剂的提议

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Vitamin D plays an important role in the regulation of the calcium and phosphorus metabolism as well as in bone formation. These physiological actions caused by vitamin D are triggered by the specific binding of vitamin D to its receptor (VDR). Here we investigated the specific interactions and binding affinities between VDR and vitamin D derivatives, using ab initio fragment molecular orbital (FMO) calculations. The FMO results elucidate that relative position of the two hydroxyl groups of the derivatives is essential for the strong binding affinity between the derivative and Arg274 residue of VDR. It is therefore expected that novel potent ligands, which have a great binding affinity for VDR, are developed by adjusting the positions of the hydroxyl groups in the derivatives in such a way as these groups form strong hydrogen bonds with VDR residues. We proposed these novel derivatives and investigated their specific interactions with VDR at atomic and electronic levels to obtain a more potent ligand for VDR. (C) 2018 Elsevier Inc. All rights reserved.
机译:维生素D在调节钙和磷代谢以及骨形成中起着重要作用。由维生素D引起的这些生理动作被维生素D对其受体(VDR)的特异性结合引发。在这里,我们研究了使用AB Initio片段分子轨道(FMO)计算VDR和维生素D衍生物之间的特异性相互作用和结合亲和力。 FMO结果阐明了衍生物的两个羟基的相对位置对于VDR的衍生物和Arg274残基之间的强结合亲和力是必不可少的。因此,预期通过将衍生物中的羟基的位置以诸如与VDR残基的强氢键形成强氢键来调节衍生物中的羟基的位置来开发具有对VDR具有很大结合亲和力的新型有效配体。我们提出了这些新颖的衍生品,并调查了与原子和电子水平的VDR的具体互动,以获得VDR的更有效配体。 (c)2018年Elsevier Inc.保留所有权利。

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