Escherichia coli Stress, Multi-cellularity, and the Generation of the Quorum Sensing Peptide EDF.

Isabella Moll, Hanna Engelberg-Kulka
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Abstract

Bacterial communication via quorum sensing (QS) molecules, as well as toxin-antitoxin (TA) gene modules located on bacterial chromosomes are well-studied mechanisms. Escherichia coli mazEF is a stress-induced TA system mediating cell death requiring a QS extracellular death factor (EDF), the pentapeptide NNWNN. MazF is an endoribonuclease specific for ACA sites. During adverse conditions, the activated MazF generates a stress induced translation machinery, composed of MazF-processed mRNAs and selective ribosomes that specifically translate these processed mRNAs. Moreover, we identified the molecular mechanism underlying the formation of EDF from the zwf mRNA that involves distinct steps comprising the activity of MazF, the trans-translation system as well as the protease ClpPX. Bacterial trans-translation is generally known as a quality control process that rescues stalled translation complexes at the 3'-terminus of non-stop mRNAs. Our results indicate that trans-translation has a similar role in EDF generation from zwf mRNA. However, our data reveal that the trans-translation system may also provide a regulatory mechanism to attenuate EDF generation in the single cells. Thereby, the required threshold of EDF molecules is only achieved by the entire bacterial population, as expected for a genuine QS process.

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大肠杆菌应激、多细胞性和群体感应肽EDF的产生。
细菌通过群体感应(QS)分子和位于细菌染色体上的毒素-抗毒素(TA)基因模块进行交流的机制已经得到了很好的研究。大肠杆菌mazEF是一种应激诱导的TA系统,它介导细胞死亡,需要QS细胞外死亡因子(EDF),即五肽NNWNN。MazF是一种针对ACA位点的核糖核酸内酶。在不利条件下,活化的MazF产生应激诱导的翻译机制,由MazF加工的mrna和特异性翻译这些加工mrna的选择性核糖体组成。此外,我们确定了zwf mRNA形成EDF的分子机制,该机制涉及包括MazF活性、反翻译系统以及蛋白酶ClpPX的不同步骤。细菌反翻译通常被认为是一种质量控制过程,它可以在不间断mrna的3'端挽救停滞的翻译复合体。我们的研究结果表明,反翻译在zwf mRNA产生EDF中具有类似的作用。然而,我们的数据显示,反翻译系统也可能提供一种调节机制来减弱单细胞中EDF的产生。因此,所需的EDF分子阈值只能由整个细菌群体达到,这是真正的QS过程所期望的。
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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