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A chemical genetic screen in Mycobacterium tuberculosis identifies carbon-source-dependent growth inhibitors devoid of in vivo efficacy

机译:结核分枝杆菌的化学遗传筛选可确定缺乏体内功效的碳源依赖性生长抑制剂

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摘要

Candidate antibacterials are usually identified on the basis of their in vitro activity. However, the apparent inhibitory activity of new leads can be misleading because most culture media do not reproduce an environment relevant to infection in vivo. In this study, while screening for novel anti-tuberculars, we uncovered how carbon metabolism can affect antimicrobial activity. Novel pyrimidine–imidazoles (PIs) were identified in a whole-cell screen against Mycobacterium tuberculosis. Lead optimization generated in vitro potent derivatives with desirable pharmacokinetic properties, yet without in vivo efficacy. Mechanism of action studies linked the PI activity to glycerol metabolism, which is not relevant for M. tuberculosis during infection. PIs induced self-poisoning of M. tuberculosis by promoting the accumulation of glycerol phosphate and rapid ATP depletion. This study underlines the importance of understanding central bacterial metabolism in vivo and of developing predictive in vitro culture conditions as a prerequisite for the rational discovery of new antibiotics.
机译:通常基于其体外活性来鉴定候选抗菌剂。但是,由于大多数培养基不能在体内复制与感染相关的环境,因此新的铅的明显抑制活性可能会产生误导。在这项研究中,在筛选新型抗结核药物时,我们发现了碳代谢如何影响抗菌活性。在针对结核分枝杆菌的全细胞筛选中鉴定了新型嘧啶-咪唑(PIs)。铅优化产生具有所需药代动力学性质的体外有效衍生物,但没有体内功效。作用机理研究将PI活性与甘油代谢联系在一起,而甘油代谢与感染期间的结核分枝杆菌无关。 PIs通过促进磷酸甘油酯的积累和快速ATP消耗来诱导结核分枝杆菌的自我中毒。这项研究强调了理解体内中央细菌代谢和发展预测性体外培养条件的重要性,这是合理发现新抗生素的前提。

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