Hubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Science, Central China Normal University, Luo Yu Road 152, Wuhan, People's Republic of China.
Curr Microbiol. 2012 Mar;64(3):234-41. doi: 10.1007/s00284-011-0058-3. Epub 2011 Dec 4.
The alternative sigma factor SigB in food-borne pathogen Listeria monocytogenes was determined in this study to be required for tolerance to protein synthesis-inhibiting antibiotics. The minimum inhibitory concentrations of tetracycline HCl and gentamicin sulphate against EGDeΔsigB were two- and fourfold less than those for EGDe, respectively. The ability of EGDeΔsigB to overcome the growth arrest caused by erythromycin and rifampin was also weaker than that of EGDe. The transcription analysis of four genetic loci (known to be induced by rifampin in Bacillus subtili) kat, fri, ropB and rsbU in EGDe and EGDeΔsigB in the absence or presence of rifampin revealed that: (1) expression of kat and fri genes is σ (B) dependent, but only the former is inducible by rifampin stress; (2) the transcriptional level of rpoB gene was stable under all the experimental conditions, while that of rsbU in EGDeΔsigB was remarkably higher in the absence of rifampin and significantly increased in EGDe but reduced in EGDeΔsigB after rifampin application, when compared to those in EGDe and EGDeΔsigB control without antibiotic, respectively. These results suggest that complex physiological reactions to tolerance of the antibiotic stress are variably regulated in bacteria, and in contrast to B. subtilis, rsbU in EGDeΔsigB may compensate for the σ (B)-dependent genes that are necessary for tolerance to rifampin stress and therefore plays a role in overcoming the antibiotic-triggered growth arrest.
在本研究中,确定食源性致病菌单核细胞增生李斯特菌中的替代 σ 因子 SigB 对于耐受蛋白合成抑制抗生素是必需的。四环素盐酸盐和硫酸庆大霉素对 EGDeΔsigB 的最小抑菌浓度分别比 EGDe 低两到四倍。EGDeΔsigB 克服红霉素和利福平引起的生长停滞的能力也弱于 EGDe。在不存在或存在利福平的情况下,对四个遗传基因座(已知在枯草芽孢杆菌中被利福平诱导)kat、fri、ropB 和 rsbU 在 EGDe 和 EGDeΔsigB 中的转录分析表明:(1)kat 和 fri 基因的表达依赖于 σ(B),但只有前者可被利福平应激诱导;(2)rpoB 基因的转录水平在所有实验条件下都很稳定,而 rsbU 在 EGDeΔsigB 中在不存在利福平的情况下显著更高,在 EGDe 中在应用利福平后显著增加,与没有抗生素的 EGDe 和 EGDeΔsigB 对照相比,分别。这些结果表明,细菌对抗生素应激耐受的复杂生理反应是不同调节的,与枯草芽孢杆菌不同,EGDeΔsigB 中的 rsbU 可能补偿了对利福平应激耐受所必需的依赖于 σ(B)的基因,因此在克服抗生素引发的生长停滞方面发挥作用。