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A Phenotypic Based Target Screening Approach Delivers New Antitubercular CTP Synthetase Inhibitors

抗细菌 结核分枝杆菌 生物化学 表型筛选 计算生物学 背景(考古学) 生物 药物发现 表型 肺结核 基因 医学 病理 古生物学
作者
Marta Esposito,Sára Szádocka,Giulia Degiacomi,Béatrice Silvia Orena,Giorgia Mori,Valentina Piano,Francesca Boldrin,Júlia Zemanová,Stanislav Huszár,David Barros,Sean Ekins,Joël Lelièvre,Riccardo Manganelli,Andrea Mattevi,Maria Rosalia Pasca,Giovanna Riccardi,Lluís Ballell,Katarı́na Mikušová,Laurent R. Chiarelli
出处
期刊:ACS Infectious Diseases [American Chemical Society]
卷期号:3 (6): 428-437 被引量:36
标识
DOI:10.1021/acsinfecdis.7b00006
摘要

Despite its great potential, the target-based approach has been mostly unsuccessful in tuberculosis drug discovery, while whole cell phenotypic screening has delivered several active compounds. However, for many of these hits, the cellular target has not yet been identified, thus preventing further target-based optimization of the compounds. In this context, the newly validated drug target CTP synthetase PyrG was exploited to assess a target-based approach of already known, but untargeted, antimycobacterial compounds. To this purpose the publically available GlaxoSmithKline antimycobacterial compound set was assayed, uncovering a series of 4-(pyridin-2-yl)thiazole derivatives which efficiently inhibit the Mycobacterium tuberculosis PyrG enzyme activity, one of them showing low activity against the human CTP synthetase. The three best compounds were ATP binding site competitive inhibitors, with Ki values ranging from 3 to 20 μM, but did not show any activity against a small panel of different prokaryotic and eukaryotic kinases, thus demonstrating specificity for the CTP synthetases. Metabolic labeling experiments demonstrated that the compounds directly interfere not only with CTP biosynthesis, but also with other CTP dependent biochemical pathways, such as lipid biosynthesis. Moreover, using a M. tuberculosis pyrG conditional knock-down strain, it was shown that the activity of two compounds is dependent on the intracellular concentration of the CTP synthetase. All these results strongly suggest a role of PyrG as a target of these compounds, thus strengthening the value of this kind of approach for the identification of new scaffolds for drug development.
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