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首页> 外文期刊>MBio >Escherichia coli Quorum-Sensing EDF, A Peptide Generated by Novel Multiple Distinct Mechanisms and Regulated by trans-Translation
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Escherichia coli Quorum-Sensing EDF, A Peptide Generated by Novel Multiple Distinct Mechanisms and Regulated by trans-Translation

机译:大肠杆菌群体感应EDF,一种由新型多重独特机制产生并受 trans -调控的肽

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ABSTRACT Eshcerichia coli mazEF is a stress-induced toxin-antitoxin module mediating cell death and requiring a quorum-sensing (QS) e xtracellular d eath f actor (EDF), the pentapeptide NNWNN. Here we uncovered several distinct molecular mechanisms involved in its generation from the zwf mRNA encoding glucose-6-phosphate dehydrogenase. In particular, we show that, under stress conditions, the endoribonuclease MazF cleaves specific ACA sites, thereby generating a leaderless zwf mRNA which is truncated 30 codons after the EDF-encoding region. Since the nascent ribosome peptide exit tunnel can accommodate up to 40?amino acids, this arrangement allows the localization of the EDF residues inside the tunnel when the ribosome is stalled at the truncation site. Moreover, ribosome stalling activates the trans -translation system, which provides a means for the involvement of ClpPX in EDF generation. Furthermore, the trans -translation is described as a regulatory system that attenuated the generation of EDF, leading to low levels of EDF in the single cell. Therefore, the threshold EDF molecule concentration required is achieved only by the whole population, as expected for QS. IMPORTANCE Bacteria communicate with one another via quorum-sensing (QS) signal molecules. QS provides a mechanism for bacteria to monitor each other’s presence and to modulate gene expression in response to population density. Previously, we added E.?coli pentapeptide EDF to this list of QS molecules. We showed that, under stress conditions, the induced MazF, an endoribonuclease cleaving at ACA sites, generates EDF from zwf. Here we studied the mechanism of EDF generation and asked whether it is related to EDF density dependency. We illustrated that, under stress conditions, multiple distinct complex mechanisms are involved in EDF generation. This includes formation of leaderless truncated zwf mRNA by MazF, configuration of a length corresponding to the nascent ribosome peptide exit tunnel, rescue performed by the trans -translation system, and cleavage by ClpPX protease. trans -Translation is described as a regulatory system attenuating EDF generation and leading to low levels of EDF in the single cell, as expected for QS.
机译:摘要大肠杆菌mazEF是一种应激诱导的毒素-抗毒素模块,可介导细胞死亡,并需要群体感应(QS)和细胞外因子(EDF),即五肽NNWNN。在这里,我们发现了从编码葡萄糖-6-磷酸脱氢酶的zwf mRNA产生中涉及到的几种独特的分子机制。特别是,我们表明,在胁迫条件下,核糖核酸内切酶MazF裂解特定的ACA位点,从而生成无前导的zwf mRNA,该序列在EDF编码区后被截短了30个密码子。由于新生的核糖体肽出口通道可容纳多达40个氨基酸,因此当核糖体停滞在截短位点时,这种排列方式可使EDF残基定位在通道内。此外,核糖体失速激活了反式翻译系统,这为ClpPX参与EDF产生提供了一种手段。此外,反式翻译被描述为一种调节系统,该系统减弱了EDF的产生,从而导致单个细胞中EDF的水平降低。因此,正如QS所预期的那样,所需的EDF分子浓度阈值只能由整个人群实现。重要信息细菌通过群体感应(QS)信号分子相互通信。 QS为细菌提供了一种机制来监视彼此的存在并根据种群密度调节基因表达。以前,我们在此QS分子列表中添加了大肠杆菌五肽EDF。我们表明,在应激条件下,诱导的MazF(一种在ACA位置裂解的内切核糖核酸酶)从zwf生成EDF。在这里,我们研究了EDF生成的机制,并询问它是否与EDF密度依赖性有关。我们说明,在压力条件下,EDF的产生涉及多种不同的复杂机制。这包括通过MazF形成无前导的截短的zwf mRNA,对应于新生核糖体肽出口通道的长度构型,由反式翻译系统进行的拯救以及由ClpPX蛋白酶切割。如QS所预期的,反式翻译被描述为一种调节系统,可减弱EDF的产生并导致单个细胞中EDF的水平降低。

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