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首页> 外文期刊>Bulletin of the Korean Chemical Society >In silico Study on the Interaction between P-glycoprotein and Its Inhibitors at the Drug Binding Pocket
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In silico Study on the Interaction between P-glycoprotein and Its Inhibitors at the Drug Binding Pocket

机译:在药物结合口袋中P-糖蛋白与其抑制剂之间相互作用的计算机研究

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摘要

P-glycoprotein (P-gp) is a member of the ATP-Binding Cassette transporter superfamily and mediates transmembrane efflux of many drags. Since it is involved in multi-drug resistance activity in various cancer cells, the development of P-gp inhibitor is one of the major concerns in anticancer therapy. Human P-gp protein has at least two "functional" drug binding sites that are called "H" site and "R" site, hence it has multi-binding-specificities. Though the amino acid residues that constitute in drug binding pockets have been proposed by previous experimental evidences, the shapes and the binding poses are not revealed clearly yet. In this study, human P-gp structure was built by homology modeling with available crystal structure of mouse P-gp as a template and docking simulations were performed with inhibitors such as verapamil, hoechst33342, and rhodaminel23 to construct the interaction between human P-gp and its inhibitors. The docking simulations were performed 500 times for each inhibitor, and then the interaction frequency of the amino acids at the binding poses was analyzed. With the analysis results, we proposed highly contributing residues that constitute binding pockets of the human P-gp for the inhibitors. Using the highly contributing residues, we proposed the locations and the shapes of verapamil binding site and "R" site, and suggested the possible position of "H" site.
机译:P-糖蛋白(P-gp)是ATP结合盒式转运蛋白超家族的成员,并介导许多药物的跨膜外排。由于它参与了多种癌细胞的多药耐药性活动,因此P-gp抑制剂的开发是抗癌治疗的主要关注之一。人P-gp蛋白具有至少两个“功能”药物结合位点,分别称为“ H”位点和“ R”位点,因此具有多重结合特异性。尽管先前的实验证据已经提出了构成药物结合袋的氨基酸残基,但是其形状和结合姿势尚不清楚。在这项研究中,通过同源建模以小鼠P-gp的可用晶体结构为模板构建人P-gp结构,并使用维拉帕米,hoechst33342和若丹明1323等抑制剂进行对接模拟,以构建人P-gp之间的相互作用及其抑制剂。对每种抑制剂进行了500次对接模拟,然后分析了氨基酸在结合姿势下的相互作用频率。根据分析结果,我们提出了构成抑制剂的人P-gp结合口袋的高贡献残基。利用高贡献的残基,我们提出了维拉帕米结合位点和“ R”位点的位置和形状,并提出了“ H”位点的可能位置。

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