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Birth and Resuscitation of (p)ppGpp Induced Antibiotic Tolerant Persister Cells

机译:(p)ppGpp诱导的抗生素耐受性持久性细胞的出生和复苏

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Transient antibiotic treatment typically eradicates most sensitive bacteria except a few survivors called persisters. The second messenger (p)ppGpp plays a key role in persister formation in Escherichia coli populations but the underlying mechanisms have remained elusive. In this study we induced (p)ppGpp synthesis by modulating tRNA charging and then directly observed the stochastic appearance, antibiotic tolerance, and resuscitation of persister cells using live microscopy. Different physiological parameters of persister cells as well as their regularly growing ancestors and sisters were continuously monitored using fluorescent reporters. Our results confirmed previous findings that high (p)ppGpp levels are critical for persister formation, but the phenomenon remained strikingly stochastic without any correlation between (p)ppGpp levels and antibiotic tolerance on the single-cell level. We could not confirm previous notions that persisters exhibit markedly low concentrations of intracellular ATP or were linked to post-transcriptional effects of (p)ppGpp through the activation of small genetic elements known as toxin-antitoxin (TA) modules. Instead, we suggest that persister cell formation under regular conditions is driven by the transcriptional response to increased (p)ppGpp levels.
机译:短暂的抗生素治疗通常会根除大多数敏感细菌,只有少数幸存者称为持久性细菌。第二信使(p)ppGpp在大肠杆菌种群的持久性形成中起着关键作用,但其潜在机制仍然难以捉摸。在这项研究中,我们通过调节tRNA电荷诱导(p)ppGpp合成,然后使用实时显微镜直接观察随机出现,抗生素耐受性和持久性细胞复苏。持续性细胞的不同生理参数,以及它们有规律地生长的祖先和姐妹,使用荧光报告器连续监测。我们的结果证实了先前的发现,高(p)ppGpp水平对于形成持久性至关重要,但这种现象仍然非常随机,在单细胞水平上(p)ppGpp水平与抗生素耐受性之间没有任何关联。我们无法证实先前的观点,即持久性物质表现出明显低的细胞内ATP浓度,或通过激活称为毒素-抗毒素(TA)的小型遗传元件与(p)ppGpp的转录后作用相关。相反,我们建议在正常条件下的持久性细胞形成是由对(p)ppGpp水平升高的转录反应驱动的。

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