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寻找潜在的mTOR抑制剂:基于配体的药物设计、对接及雷帕霉素结合位点的分子动力学研究

Searching for potential mTOR inhibitors: Ligand-based drug design, docking and molecular dynamics studies of rapamycin binding site.

作者信息

Kist Roger, Timmers Luis Fernando Saraiva Macedo, Caceres Rafael Andrade

机构信息

Graduate Program in Health Sciences of Federal University of Health Sciences of Porto Alegre-UFCSPA, Porto Alegre City, Brazil.

Laboratory for Bioinformatics, Modelling and Simulation of Biosystems-LABIO, Pontifical Catholic University of Rio Grande do Sul-PUCRS, Porto Alegre City, Brazil; Graduate Program in Cellular and Molecular Biology (PPGBCM), PUCRS, Porto Alegre, RS, Brazil.

出版信息

J Mol Graph Model. 2018 Mar;80:251-263. doi: 10.1016/j.jmgm.2017.12.015. Epub 2017 Dec 24.

Abstract

The PI3K/Akt/mTOR pathway is an important intracellular signaling pathway in cell cycle regulation and its dysregulation is associated with various types of diseases. mTOR (mechanistic or mammalian target of rapamycin) is the main enzyme that performs intermediate control of the signaling pathway through a phosphotransfer process. The classical inhibition of the mTOR pathway is effected by rapamycin and its analogous blocking allosterically the catalytic phosphorylation site, avoiding the deleterious side effects induced by ATP-competitive inhibitors. We employed ligand-based drug design strategies such as pharmacophore searching and analysis, molecular docking, absorption, distribution, metabolism, excretion and toxicity (ADMETox) properties filtering, and molecular dynamics to select potential molecules to become non-ATP competitive inhibitors of the mTOR complex. According to our findings, we propose eight novel potential mTOR inhibitors with similar or better properties than the classic inhibitor complex, rapamycin.

摘要

PI3K/Akt/mTOR信号通路是细胞周期调控中一条重要的细胞内信号通路,其失调与多种疾病相关。mTOR(雷帕霉素作用靶点,即机械靶点或哺乳动物靶点)是通过磷酸转移过程对该信号通路进行中间控制的主要酶。mTOR信号通路的经典抑制作用由雷帕霉素及其类似物实现,它们通过变构作用阻断催化磷酸化位点,避免了ATP竞争性抑制剂所诱导的有害副作用。我们采用了基于配体的药物设计策略,如药效团搜索与分析、分子对接、吸收、分布、代谢、排泄及毒性(ADMETox)性质筛选以及分子动力学,以选择有可能成为mTOR复合物非ATP竞争性抑制剂的分子。根据我们的研究结果,我们提出了8种新型潜在mTOR抑制剂,其性质与经典抑制剂复合物雷帕霉素相似或更优。

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