University of Colorado Denver, School of Medicine, Department of Microbiology, P18-9115, 12800 East 19th Avenue, PO Box 6511, Aurora, CO 80045, USA.
J Bacteriol. 2010 Mar;192(6):1662-70. doi: 10.1128/JB.00926-09. Epub 2009 Dec 18.
Mycobacterium tuberculosis survives in latently infected individuals, likely in a nonreplicating or dormancy-like state. The M. tuberculosis DosR regulon is a genetic program induced by conditions that inhibit aerobic respiration and prevent bacillus replication. In this study, we used a mutant incapable of DosR regulon induction to investigate the contribution of this regulon to bacterial metabolism during anaerobic dormancy. Our results confirm that the DosR regulon is essential for M. tuberculosis survival during anaerobic dormancy and demonstrate that it is required for metabolic processes that occur upon entry into and throughout the dormant state. Specifically, we showed that regulon mechanisms shift metabolism away from aerobic respiration in the face of dwindling oxygen availability and are required for maintaining energy levels and redox balance as the culture becomes anaerobic. We also demonstrated that the DosR regulon is crucial for rapid resumption of growth once M. tuberculosis exits an anaerobic or nitric oxide-induced nonrespiring state. In summary, the DosR regulon encodes novel metabolic mechanisms essential for M. tuberculosis to survive in the absence of respiration and to successfully transition rapidly between respiring and nonrespiring conditions without loss of viability.
结核分枝杆菌存在于潜伏感染的个体中,可能处于非复制或休眠状态。结核分枝杆菌 DosR 调节子是一个由抑制需氧呼吸和防止杆菌复制的条件诱导的遗传程序。在这项研究中,我们使用了一种不能诱导 DosR 调节子的突变体来研究该调节子在厌氧休眠期间对细菌代谢的贡献。我们的结果证实,DosR 调节子是结核分枝杆菌在厌氧休眠期间存活所必需的,并且证明它是在进入休眠状态和整个休眠状态期间发生的代谢过程所必需的。具体来说,我们表明,在氧气供应减少的情况下,调节子机制将代谢从需氧呼吸中转移出来,并且需要维持能量水平和氧化还原平衡,因为培养物变得厌氧。我们还表明,一旦结核分枝杆菌退出厌氧或一氧化氮诱导的非呼吸状态,DosR 调节子对于快速恢复生长至关重要。总之,DosR 调节子编码了新型代谢机制,对于结核分枝杆菌在没有呼吸的情况下生存以及在不丧失生存能力的情况下快速在呼吸和非呼吸条件之间转换是必不可少的。