PDZ域
药物发现
化学
计算生物学
小分子
对接(动物)
鉴定(生物学)
虚拟筛选
靶蛋白
领域(数学分析)
纳米技术
计算机科学
生物化学
基因
生物
医学
植物
数学分析
护理部
材料科学
数学
作者
Laurent Hoffer,Manon Garcia,Raphaël Leblanc,Mikaël Feracci,S. Betzi,Khaoula Ben Yaala,Avais M. Daulat,Pascale Zimmermann,Philippe Roche,Karine Barral,Xavier Morelli
标识
DOI:10.1021/acs.jmedchem.2c01569
摘要
The rapid identification of early hits by fragment-based approaches and subsequent hit-to-lead optimization represents a challenge for drug discovery. To address this challenge, we created a strategy called "DOTS" that combines molecular dynamic simulations, computer-based library design (chemoDOTS) with encoded medicinal chemistry reactions, constrained docking, and automated compound evaluation. To validate its utility, we applied our DOTS strategy to the challenging target syntenin, a PDZ domain containing protein and oncology target. Herein, we describe the creation of a "best-in-class" sub-micromolar small molecule inhibitor for the second PDZ domain of syntenin validated in cancer cell assays. Key to the success of our DOTS approach was the integration of protein conformational sampling during hit identification stage and the synthetic feasibility ranking of the designed compounds throughout the optimization process. This approach can be broadly applied to other protein targets with known 3D structures to rapidly identify and optimize compounds as chemical probes and therapeutic candidates.
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