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Regulating Toxin-Antitoxin Expression: Controlled Detonation of Intracellular Molecular Timebombs

机译:调节毒素-抗毒素的表达:细胞内分子定时炸弹的受控爆炸。

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摘要

Genes for toxin-antitoxin (TA) complexes are widely disseminated in bacteria, including in pathogenic and antibiotic resistant species. The toxins are liberated from association with the cognate antitoxins by certain physiological triggers to impair vital cellular functions. TAs also are implicated in antibiotic persistence, biofilm formation, and bacteriophage resistance. Among the ever increasing number of TA modules that have been identified, the most numerous are complexes in which both toxin and antitoxin are proteins. Transcriptional autoregulation of the operons encoding these complexes is key to ensuring balanced TA production and to prevent inadvertent toxin release. Control typically is exerted by binding of the antitoxin to regulatory sequences upstream of the operons. The toxin protein commonly works as a transcriptional corepressor that remodels and stabilizes the antitoxin. However, there are notable exceptions to this paradigm. Moreover, it is becoming clear that TA complexes often form one strand in an interconnected web of stress responses suggesting that their transcriptional regulation may prove to be more intricate than currently understood. Furthermore, interference with TA gene transcriptional autoregulation holds considerable promise as a novel antibacterial strategy: artificial release of the toxin factor using designer drugs is a potential approach to induce bacterial suicide from within.
机译:毒素-抗毒素(TA)复合物的基因在细菌中广泛传播,包括在致病性和抗生素抗性物种中。通过某些损害生命关键细胞功能的生理触发因素,可将毒素从与相关抗毒素的结合中释放出来。 TA还与抗生素的持久性,生物膜形成和噬菌体抗性有关。在已鉴定出的数量不断增加的TA模块中,最多的是其中毒素和抗毒素均为蛋白质的复合物。编码这些复合物的操纵子的转录自动调节是确保平衡产生TA并防止无意释放毒素的关键。通常通过使抗毒素与操纵子上游的调节序列结合来进行控制。毒素蛋白通常充当转录共抑制因子,可重塑和稳定抗毒素。但是,此范例有明显的例外。而且,越来越清楚的是,TA复合物通常在应激反应的互连网中形成一条链,这表明它们的转录调控可能比目前所理解的更为复杂。此外,对TA基因转录自调控的干扰作为一种新型的抗菌策略具有广阔的前景:使用设计药物人工释放毒素因子是从内部诱导细菌自杀的潜在方法。

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