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首页> 外文期刊>Cell Reports >Ergothioneine Maintains Redox and Bioenergetic Homeostasis Essential for Drug Susceptibility and Virulence of Mycobacterium tuberculosis
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Ergothioneine Maintains Redox and Bioenergetic Homeostasis Essential for Drug Susceptibility and Virulence of Mycobacterium tuberculosis

机译:麦角硫氨酸维持氧化还原和生物能稳态,对于结核分枝杆菌的药敏性和毒力必不可少

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The mechanisms by which Mycobacterium tuberculosis (Mtb) maintains metabolic equilibrium to survive during infection and upon exposure to antimycobacterial drugs are poorly characterized. Ergothioneine (EGT) and mycothiol (MSH) are the major redox buffers present in Mtb, but the contribution of EGT to Mtb redox homeostasis and virulence remains unknown. We report that Mtb WhiB3, a 4Fe-4S redox sensor protein, regulates EGT production and maintains bioenergetic homeostasis. We show that central carbon metabolism and lipid precursors regulate EGT production and that EGT modulates drug sensitivity. Notably, EGT and MSH are both essential for redox and bioenergetic homeostasis. Transcriptomic analyses of EGT and MSH mutants indicate overlapping but distinct functions of EGT and MSH. Last, we show that EGT is critical for Mtb survival in both macrophages and mice. This study has uncovered a dynamic balance between Mtb redox and bioenergetic homeostasis, which critically influences Mtb drug susceptibility and pathogenicity.
机译:结核分枝杆菌(Mtb)维持新陈代谢平衡以在感染过程中以及暴露于抗分枝杆菌药物后存活的机制尚不明确。麦角硫氨酸(EGT)和麦考硫醇(MSH)是Mtb中存在的主要氧化还原缓冲液,但是EGT对Mtb氧化还原稳态和毒力的贡献仍然未知。我们报告说,Mtb WhiB3,一种4Fe-4S氧化还原传感器蛋白,调节EGT的产生并维持生物能的体内平衡。我们显示中央碳代谢和脂质前体调节EGT的生产,并且EGT调节药物敏感性。值得注意的是,EGT和MSH都是氧化还原和生物能体内稳态必不可少的。 EGT和MSH突变体的转录组学分析表明,EGT和MSH的功能重叠但截然不同。最后,我们证明EGT对巨噬细胞和小鼠的Mtb存活至关重要。这项研究发现了Mtb氧化还原和生物能稳态之间的动态平衡,这严重影响了Mtb药物的敏感性和致病性。

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