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Target Identification of Mycobacterium tuberculosis Phenotypic Hits Using a Concerted Chemogenomic, Biophysical, and Structural Approach

机译:协同化学基因组学,生物物理和结构方法鉴定结核分枝杆菌表型命中

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Mycobacterium phenotypic hits are a good reservoir for new chemotypes for the treatment of tuberculosis. However, the absence of defined molecular targets and modes of action could lead to failure in drug development. Therefore, a combination of ligand-based and structure-based chemogenomic approaches followed by biophysical and biochemical validation have been used to identify targets for Mycobacterium tuberculosis phenotypic hits. Our approach identified EthR and InhA as targets for several hits, with some showing dual activity against these proteins. From the 35 predicted EthR inhibitors, eight exhibited an IC_(50)below 50 μM against M. tuberculosis EthR and three were confirmed to be also simultaneously active against InhA. Further hit validation was performed using X-ray crystallography yielding eight new crystal structures of EthR inhibitors. Although the EthR inhibitors attain their activity against M. tuberculosis by hitting yet undefined targets, these results provide new lead compounds that could be further developed to be used to potentiate the effect of EthA activated pro-drugs, such as ethionamide, thus enhancing their bactericidal effect.
机译:分枝杆菌表型命中是用于治疗结核病的新化学型的良好储库。但是,缺乏明确的分子靶标和作用方式可能导致药物开发失败。因此,结合了基于配体和基于结构的化学基因组学方法以及随后的生物物理和生化验证,已用于鉴定结核分枝杆菌表型命中的靶标。我们的方法将EthR和InhA鉴定为几种命中的靶标,其中一些对这些蛋白表现出双重活性。从35种预测的EthR抑制剂中,有8种对结核分枝杆菌EthR的IC_(50)低于50μM,并且证实了3种对InhA也具有活性。使用X射线晶体学进行了进一步的命中验证,得到了8个EthR抑制剂新的晶体结构。尽管EthR抑制剂通过击中尚未确定的靶点而达到了抗结核分枝杆菌的活性,但这些结果提供了新的先导化合物,可以进一步开发这些新的先导化合物,以增强EthA激活的前药(如乙硫酰胺)的作用,从而增强杀菌力影响。

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