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Interpretation of the mechanism of action of antituberculosis drug bedaquiline based on a novel two‐ion theory of energy coupling in ATP synthesis

机译:基于新的能量耦合两离子理论在ATP合成中抗结核药物苯达喹啉的作用机理解释

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摘要

Tuberculosis (TB) claims the lives of 1.3 million people each year, more than any other bacterial infection. Hence great interest was generated in health communities upon the recent introduction of the new diarylquinoline anti‐TB drug, bedaquiline. Bedaquiline acts by binding to the c‐subunit in the membrane‐bound FO portion of the F1FO‐adenosine triphosphate (ATP) synthase, the universal enzyme that produces the ATP needed by cells. However, the mechanism of killing by bedaquiline is not fully understood. Recent observations related to the bactericidal effects of bedaquiline, which show that it is a potent uncoupler of respiration‐driven ATP synthesis in Mycobacterium smegmatis are summarized. These observations are then interpreted from the standpoint of Nath's two‐ion theory of energy coupling in ATP synthesis (Nath, Biophys. Chem. 2017; 230:45–52). Especial importance is given to the interpretation of biochemical fluorescence quenching data, and the differences between the uncoupling induced by bedaquiline from that by the classical anionic uncouplers of oxidative phosphorylation are highlighted. Suggestions for new experiments that could lead to a better understanding of the uncoupling mechanism are made. A model of uncoupling action by the drug is presented, and the biochemical basis underlying uncoupling of ATP synthesis and lethality in mycobacteria is elucidated. The major biological implications arising from these novel insights are discussed. It is hoped that the analysis will lead to a more fundamental understanding of biological energy coupling, uncoupling and transduction, and to an integrated view for the design of novel antimicrobials by future research in the field.
机译:结核病(TB)每年夺走130万人的生命,比任何其他细菌感染都要多。因此,在最近引入新的二芳基喹啉抗结核药物贝达喹啉后,对健康界产生了极大的兴趣。贝达喹啉通过与F1FO-三磷酸腺苷(ATP)合酶的膜结合FO部分中的c亚基结合而起作用,后者是产生细胞所需ATP的通用酶。但是,对苯达喹啉杀死的机制尚未完全了解。总结了与苯达喹啉具有杀菌作用有关的最新观察结果,这些结果表明它是耻垢分枝杆菌中呼吸驱动的ATP合成的有效解偶联剂。然后,从Nath在ATP合成中的能量耦合的两离子理论的观点来解释这些观察结果(Nath,Biophys。Chem。2017; 230:45-52)。特别重要的是对生化荧光猝灭数据的解释,并且强调了苯达喹啉引起的解偶联与经典的氧化磷酸化阴离子解偶联剂引起的解偶联之间的差异。提出了一些新实验的建议,这些实验可能会导致人们更好地理解解耦机理。提出了药物解偶联作用的模型,并阐明了分枝杆菌中ATP合成与致死性解偶联的生化基础。这些新颖的见解产生的主要生物学意义进行了讨论。希望该分析将导致对生物能耦合,解偶联和转导的更基本的了解,并为该领域未来的研究提供新颖的抗菌剂设计的综合观点。

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