College of Pharmaceutical Sciences, Soochow University, 199 Renai Road, Suzhou 215123, P. R. China.
Beijing Key Laboratory of Drug Resistance Tuberculosis Research, Department of Pharmacology, Beijing Tuberculosis and Thoracic Tumor Research, Beijing Chest Hospital, 97 Ma Chang Street, Beijing 101149, P. R. China.
J Med Chem. 2021 Oct 14;64(19):14526-14539. doi: 10.1021/acs.jmedchem.1c01049. Epub 2021 Oct 5.
The benzothiazinone (BTZ) scaffold compound PBTZ169 kills by inhibiting the essential flavoenzyme DprE1, consequently blocking the synthesis of the cell wall component arabinans. While extraordinarily potent against with a minimum inhibitory concentration (MIC) less than 0.2 ng/mL, its low aqueous solubility and bioavailability issues need to be addressed. Here, we designed and synthesized a series of 6-methanesulfonyl substituted BTZ analogues; further exploration introduced five-member aromatic heterocycles as linkers to attach an aryl group as the side chain. Our work led to the discovery of a number of BTZ derived compounds with potent antitubercular activity. The optimized compounds and exhibited MIC 47 and 30 nM, respectively. Compared to PBTZ169, both compounds displayed increased aqueous solubility and higher stability in human liver microsomes. This study suggested that an alternative side-chain modification strategy could be implemented to improve the druglike properties of the BTZ-based compounds.
苯并噻嗪酮 (BTZ) 类化合物 PBTZ169 通过抑制必需的黄素酶 DprE1 杀死 ,从而阻断细胞壁成分阿拉伯聚糖的合成。虽然它对 具有极高的活性,最低抑菌浓度 (MIC) 小于 0.2ng/mL,但它的低水溶解度和生物利用度问题需要解决。在这里,我们设计并合成了一系列 6-甲磺酰基取代的 BTZ 类似物;进一步的探索引入了五元芳杂环作为连接子,将芳基作为侧链连接。我们的工作发现了一些具有强大抗结核活性的 BTZ 衍生化合物。优化的化合物 和 表现出 MIC 47 和 30 nM,分别。与 PBTZ169 相比,这两种化合物的水溶解度均增加,在人肝微粒体中的稳定性也更高。本研究表明,可以实施替代的侧链修饰策略来改善基于 BTZ 的化合物的类药性。
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