Expression of Resuscitation-Promoting Factor C Stimulates the Growth of Mycobacterium bovis BCG and Delays DevR Regulon Activation in Hypoxia.

IF 2.8 Q3 MICROBIOLOGY
International Journal of Microbiology Pub Date : 2025-02-17 eCollection Date: 2025-01-01 DOI:10.1155/ijm/2139933
Luz Virginia Reyes-González, Olga N Hernández de la Cruz, Mauricio Castañón-Arreola
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引用次数: 0

Abstract

Latent tuberculosis is characterized by the presence of dormant, nonreplicating (DNR) bacilli for years without causing clinical signs and symptoms, remaining as a major reservoir for active tuberculosis. The mechanism through which M. tuberculosis transits from DNR to active bacilli remains unclear. However, resuscitation-promoting factors (Rpfs) could participate in the reactivation. Using recombinant M. bovis BCG that expresses rpfC (M. bovis BCG-pMV261::rpfC), we evaluated the role of RpfC in the growth of bacilli and the expression of 11 hypoxia-regulated genes in comparison with M. bovis BCG-pMV261. The strains were grown in normoxic (21% O2), hypoxic (5% O2), and anoxic (< 0.1% O2) conditions. In normoxic culture, M. bovis BCG-pMV261::rpfC displays a lower expression of sigB and fdxA. In anoxic culture, we did not observe drastic changes in the gene expression, except for those involved in electron transport during anaerobic respiration (pdxA, pfkB, and nark2), whose expression was significantly lower in M. bovis BCG-pMV261. When the strains were cultured in hypoxia, significantly higher culturability was observed in M. bovis BCG-pMV261::rpfC compared to M. bovis BCG-pMV261. This response was accompanied by a higher sigB and sigE expression. In both strains, we observed a higher dosT, devR, fdxA, and fpkB expression in response to hypoxia. Interestingly, except for fdxA, the expression of these genes was lower in M. bovis BCG-pMV261::rpfC. The protein profiles of M. bovis BCG-pMV261::rpfC reflected the maintenance of an active replicative state (similar to that of the strain grown in normoxic conditions). In anoxic cultures, no significant changes were observed in the expression of hypoxia-response genes. These findings suggest that rpfC may have a significant physiological role in inducing the growth of M. bovis BCG-pMV261::rpfC, which results in the delayed activation of genes related to the transition to anaerobic metabolism.

复苏促进因子C的表达刺激牛分枝杆菌卡介苗生长和延迟缺氧条件下DevR调控的激活。
潜伏性结核病的特点是潜伏的非复制(DNR)杆菌存在多年而不引起临床体征和症状,是活动性结核病的主要储存库。结核分枝杆菌从DNR转移到活性杆菌的机制尚不清楚。然而,复苏促进因子(Rpfs)可能参与再激活。利用表达rpfC的重组牛分枝杆菌BCG(牛分枝杆菌BCG- pmv261::rpfC),与牛分枝杆菌BCG- pmv261比较,研究了rpfC在杆菌生长和11个缺氧调控基因表达中的作用。菌株在常氧(21% O2)、低氧(5% O2)和缺氧(< 0.1% O2)条件下生长。在常压培养中,牛分枝杆菌BCG-pMV261::rpfC表达sigB和fdxA较低。在缺氧培养中,我们没有观察到基因表达的剧烈变化,除了在厌氧呼吸过程中参与电子传递的基因(pdxA, pfkB和nar2),它们在牛支原体BCG-pMV261中的表达显著降低。缺氧培养时,牛分枝杆菌BCG-pMV261::rpfC的培养率明显高于牛分枝杆菌BCG-pMV261。这种反应伴随着较高的sigB和sigE表达。在这两种菌株中,我们观察到缺氧时更高的dosT, devR, fdxA和fpkB表达。有趣的是,除了fdxA外,这些基因在牛分枝杆菌BCG-pMV261::rpfC中的表达都较低。牛分枝杆菌BCG-pMV261::rpfC的蛋白谱反映了其保持了活跃的复制状态(与常压条件下生长的菌株相似)。在缺氧培养中,缺氧反应基因的表达没有明显变化。这些发现表明,rpfC可能在诱导牛分枝杆菌BCG-pMV261::rpfC生长中具有重要的生理作用,从而导致与向厌氧代谢过渡相关的基因激活延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.90
自引率
0.00%
发文量
57
审稿时长
13 weeks
期刊介绍: International Journal of Microbiology is a peer-reviewed, Open Access journal that publishes original research articles, review articles, and clinical studies on microorganisms and their interaction with hosts and the environment. The journal covers all microbes, including bacteria, fungi, viruses, archaea, and protozoa. Basic science will be considered, as well as medical and applied research.
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