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In SilicoInvestigation of Potential mTOR Inhibitors from Traditional Chinese Medicine for Treatment of Leigh Syndrome

机译:在计算机模拟中研究中风治疗meigh综合征的潜在mTOR抑制剂

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A recent research demonstrates that the inhibition of mammalian target of rapamycin (mTOR) improves survival and health for patients with Leigh syndrome. mTOR proteins can be treated as drug target proteins against Leigh syndrome and other mitochondrial disorders. In this study, we aim to identify potent TCM compounds from the TCM Database@Taiwan as lead compounds of mTOR inhibitors. PONDR-Fit protocol was employed to predict the disordered disposition in mTOR protein before virtual screening. After virtual screening, the MD simulation was employed to validate the stability of interactions between each ligand and mTOR protein in the docking poses from docking simulation. The top TCM compounds, picrasidine M and acerosin, have higher binding affinities with target protein in docking simulation than control. There have H-bonds with residues Val2240 andπinteractions with common residue Trp2239. After MD simulation, the top TCM compounds maintain similar docking poses under dynamic conditions. The top two TCM compounds, picrasidine M and acerosin, were extracted fromPicrasma quassioides(D. Don) Benn. andVitex negundoL. Hence, we propose the TCM compounds, picrasidine M and acerosin, as potential candidates as lead compounds for further study in drug development process with the mTOR protein against Leigh syndrome and other mitochondrial disorders.
机译:最近的研究表明,抑制雷帕霉素(mTOR)的哺乳动物靶点可改善Leigh综合征患者的生存和健康。 mTOR蛋白可以作为针对Leigh综合征和其他线粒体疾病的药物靶蛋白。在这项研究中,我们旨在从TCM Database @ Taiwan中识别有效的TCM化合物作为mTOR抑制剂的主要化合物。在虚拟筛选之前,采用PONDR-Fit协议来预测mTOR蛋白中的无序排列。经过虚拟筛选后,通过MD模拟验证了对接模拟中对接姿态中每个配体与mTOR蛋白之间相互作用的稳定性。在对接模拟中,顶尖的中药化合物(吡喃甲基吡啶M和乙酰丙酮)与靶蛋白的结合亲和力高于对照。存在具有残基Val2240的H键和与普通残基Trp2239的π相互作用。 MD模拟后,顶级的TCM化合物在动态条件下保持相似的对接姿势。前两个中药化合物是苦味吡啶M和乙酰丁香树脂,是从拟青霉(D. Don)Benn中提取的。和Vitex negundoL。因此,我们提出了中药化合物吡卡西啶M和乙酰丙酮作为潜在化合物,可以作为潜在化合物用于进一步研究mTOR蛋白对抗Leigh综合征和其他线粒体疾病的药物开发过程。

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