Molecular modelling of K(ATP) channel blockers-ADP/ ATP carrier interactions.

A Ziemys, A Toleikis, D M Kopustinskiene
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引用次数: 11

Abstract

The modelling of molecule-molecule interactions has been widely accepted as a tool for drug discovery and development studies. However, this powerful technique is unappreciated in physiological and biochemical studies, where it could be extremely useful for understanding the mechanisms of action of various compounds in cases when experimental data are controversial due to complexity of the investigated systems. In this study, based on the biochemical data suggesting involvement of mitochondrial ADP/ATP carrier in K+ and H+ transport to mitochondrial matrix molecular modelling is applied to elucidate the possible interactions between the ADP/ATP carrier and its putative ligands--K(ATP) channel blockers glybenclamide, tolbutamide and 5-hydroxydecanoate. Results revealed that K(ATP) channel blockers could bind to the specific location proximal to H1, H4, H5 and H6 transmembrane helices within the cavity of the ADP/ ATP carrier. Analysis of the predicted binding site suggests that K(ATP) channel blockers could interfere with both the ADP/ATP translocation and possible cation flux through the ADP/ATP carrier, and supports the hypothesis that the ADP/ATP carrier is a target of K(ATP) channel modulators.

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K(ATP)通道阻滞剂- adp / ATP载体相互作用的分子模拟。
分子-分子相互作用的建模已被广泛接受为药物发现和开发研究的工具。然而,这种强大的技术在生理和生化研究中没有得到重视,当实验数据由于所研究系统的复杂性而引起争议时,它可能对理解各种化合物的作用机制非常有用。在本研究中,基于表明线粒体ADP/ATP载体参与K+和H+转运到线粒体基质的生化数据,应用分子模型来阐明ADP/ATP载体与其假定的配体——K(ATP)通道阻滞剂格列本脲、甲苯丁酰胺和5-羟基十酸酯之间可能的相互作用。结果表明,K(ATP)通道阻滞剂可以结合到ADP/ ATP载体腔内H1、H4、H5和H6跨膜螺旋附近的特定位置。对预测结合位点的分析表明,K(ATP)通道阻滞剂可以干扰ADP/ATP易位和可能通过ADP/ATP载体的阳离子通量,并支持ADP/ATP载体是K(ATP)通道调节剂靶点的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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