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The MqsR/MqsA toxin/antitoxin system protects Escherichia coli during bile acid stress

机译:MqsR / MqsA毒素/抗毒素系统可在胆汁酸胁迫下保护大肠杆菌

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摘要

Toxin/antitoxin (TA) systems are ubiquitous within bacterial genomes, and the mechanisms of many TA systems are well characterized. As such, several roles for TA systems have been proposed, such as phage inhibition, gene regulation and persister cell formation. However, the significance of these roles is nebulous due to the subtle influence from individual TA systems. For example, a single TA system has only a minor contribution to persister cell formation. Hence, there is a lack of defining physiological roles for individual TA systems. In this study, phenotype assays were used to determine that the MqsR/MqsA type II TA system of Escherichia coli is important for cell growth and tolerance during stress from the bile salt deoxycholate. Using transcriptomics and purified MqsR, we determined that endoribonuclease toxin MqsR degrades YgiS mRNA, which encodes a periplasmic protein that promotes deoxycholate uptake and reduces tolerance to deoxycholate exposure. The importance of reducing YgiS mRNA by MqsR is evidenced by improved growth, reduced cell death and reduced membrane damage when cells without ygiS are stressed with deoxycholate. Therefore, we propose that MqsR/MqsA is physiologically important for E.coli to thrive in the gallbladder and upper intestinal tract, where high bile concentrations are prominent.
机译:毒素/抗毒素(TA)系统在细菌基因组中无处不在,并且许多TA系统的机制都得到了很好的表征。这样,已经提出了TA系统的几种作用,例如噬菌体抑制,基因调节和持续细胞形成。但是,由于各个TA系统的细微影响,这些角色的意义尚不清楚。例如,单个TA系统仅对持久性细胞形成有很小的贡献。因此,缺乏为单个TA系统定义生理作用的定义。在这项研究中,使用表型分析来确定大肠杆菌的MqsR / MqsA II型TA系统对于胆汁盐脱氧胆酸盐在压力下的细胞生长和耐受性很重要。使用转录组学和纯化的MqsR,我们确定了核糖核酸内切酶毒素MqsR降解了YgiS mRNA,后者编码一种周质蛋白,可促进脱氧胆酸盐的摄取并降低对脱氧胆酸盐的耐受性。当用脱氧胆酸盐对没有ygiS的细胞施加压力时,通过改善生长,减少细胞死亡和减少膜损伤可以证明通过MqsR降低YgiS mRNA的重要性。因此,我们认为MqsR / MqsA对大肠杆菌在胆汁和上肠道(在高胆汁浓度很突出的地方)壮成长具有重要的生理意义。

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