首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Escherichia coli Toxin MqsR Destabilizes the Transcriptional Repression Complex Formed between the Antitoxin MqsA and the mqsRA Operon Promoter
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The Escherichia coli Toxin MqsR Destabilizes the Transcriptional Repression Complex Formed between the Antitoxin MqsA and the mqsRA Operon Promoter

机译:大肠杆菌毒素MqsR破坏了抗毒素MqsA和mqsRA操纵子启动子之间形成的转录抑制复合物的稳定性

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摘要

Bacterial biofilms are complex communities of cells containing an increased prevalence of dormant cells known as persisters, which are characterized by an up-regulation of genes known as toxin-antitoxin (TA) modules. The association of toxins with their cognate antitoxins neutralizes toxin activity, allowing for normal cell growth. Additionally, protein antitoxins bind their own promoters and repress transcription, whereas the toxins serve as co-repressors. Recently, TA pairs have been shown to regulate their own transcription through a phenomenon known as conditional cooperativity, where the TA complexes bind operator DNA and repress transcription only when present in the proper stoichiometric amounts. The most differentially up-regulated gene in persister cells is mqsR, a gene that, with the antitoxin mqsA, constitutes a TA module. Here, we reveal that, unlike other TA systems, MqsR is not a transcription co-repressor but instead functions to destabilize the MqsA-DNA complex. We further show that DNA binding is not regulated by conditional cooperativity. Finally, using biophysical studies, we show that complex formation between MqsR and MqsA results in an exceptionally stable interaction, resulting in a subnanomolar dissociation constant that is similar to that observed between MqsA and DNA. In combination with crystallographic studies, this work reveals that MqsA binding to DNA and MqsR is mutually exclusive. To our knowledge, this is the first TA system in which the toxin does not function as a transcriptional co-repressor, but instead functions to destabilize the antitoxin-operator complex under all conditions, and thus defines another unique feature of the mqsRA TA module.
机译:细菌生物膜是复杂的细胞群落,包含被称为持久性物质的休眠细胞的患病率升高,其特征是被称为毒素-抗毒素(TA)模块的基因上调。毒素与其关联的抗毒素的结合会中和毒素的活性,从而使细胞正常生长。另外,蛋白质抗毒素结合其自身的启动子并抑制转录,而毒素则充当共抑制子。最近,TA对已经显示出通过一种称为条件合作性的现象来调节其自身的转录,在这种情况下,TA复合物结合操纵子DNA并仅以适当的化学计量存在时才抑制转录。持久性细胞中差异最大的上调基因是mqsR,该基因与抗毒素mqsA一起构成TA模块。在这里,我们揭示出,与其他TA系统不同,MqsR不是转录共阻遏物,而是起使MqsA-DNA复合物不稳定的作用。我们进一步表明,DNA结合不受条件合作性的调节。最后,使用生物物理研究,我们显示MqsR和MqsA之间的复杂形成导致异常稳定的相互作用,从而导致亚纳摩尔离解常数,与MqsA和DNA之间观察到的相似。结合晶体学研究,这项工作表明MqsA与DNA和MqsR的结合是互斥的。据我们所知,这是第一个TA系统,其中毒素不充当转录共阻遏物,而是在所有情况下起使抗毒素操纵基因复合物不稳定的作用,从而定义了mqsRA TA模块的另一个独特功能。

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