Department of Biology, University of Texas at Arlington, Arlington, Texas, USA.
J Bacteriol. 2022 Feb 15;204(2):e0043421. doi: 10.1128/JB.00434-21. Epub 2021 Dec 13.
The stringent response is a broadly conserved stress response system that exhibits functional variability across bacterial clades. Here, we characterize the role of the stringent factor Rel in the nontuberculous mycobacterial pathogen, Mycobacterium abscessus (). We found that deletion of does not ablate (p)ppGpp synthesis and that does not provide a survival advantage in several stress conditions or in antibiotic treatment. Transcriptional data show that Rel is involved in regulating expression of anabolism and growth genes in the stationary phase. However, it does not activate transcription of stress response or antibiotic resistance genes and actually represses transcription of many antibiotic resistance genes. This work shows that there is an unannotated (p)ppGpp synthetase in . In this study, we examined the functional roles of the stringent factor Rel in Mycobacterium abscessus (). In most species, stringent factors synthesize the alarmone (p)ppGpp, which globally alters transcription to promote growth arrest and survival under stress and in antibiotic treatment. Our work shows that in , an emerging pathogen that is resistant to many antibiotics, the stringent factor Rel is not solely responsible for synthesizing (p)ppGpp. We find that Rel downregulates many metabolic genes under stress but does not upregulate stress response genes and does not promote antibiotic tolerance. This study implies that there is another critical but unannotated (p)ppGpp synthetase in and suggests that Rel inhibitors are unlikely to sensitize infections to antibiotic treatment.
严谨反应是一种广泛保守的应激反应系统,在细菌进化枝中表现出功能变异性。在这里,我们描述了严谨因子 Rel 在非结核分枝杆菌病原体脓肿分枝杆菌()中的作用。我们发现缺失 不会消除(p)ppGpp 的合成,并且在几种应激条件或抗生素治疗中, 也不能提供生存优势。转录数据表明,Rel 参与调节静止期的合成代谢和生长基因的表达。然而,它不会激活应激反应或抗生素耐药基因的转录,实际上会抑制许多抗生素耐药基因的转录。这项工作表明, 在 中存在一个未注释的(p)ppGpp 合酶。 在这项研究中,我们研究了严谨因子 Rel 在脓肿分枝杆菌()中的功能作用。在大多数物种中,严谨因子合成警报素(p)ppGpp,它会全局改变转录,以促进应激和抗生素治疗下的生长停滞和存活。我们的工作表明,在 中,一种对抗生素有耐药性的新兴病原体,严谨因子 Rel 并非唯一负责合成(p)ppGpp 的因子。我们发现,Rel 在应激下下调许多代谢基因,但不会上调应激反应基因,也不会促进抗生素耐受。这项研究表明, 在 中存在另一个关键但未注释的(p)ppGpp 合酶,并表明 Rel 抑制剂不太可能使 感染对抗生素治疗敏感。