首页> 外文期刊>Environmental microbiology >Toxin GhoT of the GhoT/GhoS toxin/antitoxin system damages the cell membrane to reduce adenosine triphosphate and to reduce growth under stress
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Toxin GhoT of the GhoT/GhoS toxin/antitoxin system damages the cell membrane to reduce adenosine triphosphate and to reduce growth under stress

机译:GhoT / GhoS毒素/抗毒素系统的毒素GhoT破坏细胞膜,以减少三磷酸腺苷并减少应激下的生长

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摘要

Toxin/antitoxin (TA) systems perhaps enable cells to reduce their metabolism to weather environmental challenges although there is little evidence to support this hypothesis. Escherichia coli GhoT/GhoS is a TA system in which toxin GhoT expression is reduced by cleavage of its messenger RNA (mRNA) by antitoxin GhoS, and TA system MqsR/MqsA controls GhoT/ GhoS through differential mRNA decay. However, the physiological role of GhoT has not been determined. We show here through transmission electron microscopy, confocal microscopy and fluorescent stains that GhoT reduces metabolism by damaging the membrane and that toxin MqsR (a 5′-GCU-specific endoribonuclease) causes membrane damage in a GhoT-dependent manner. This membrane damage results in reduced cellular levels of ATP and the disruption of proton motive force (PMF). Normally, GhoT is localized to the pole and does not cause cell lysis under physiological conditions. Introduction of an F38R substitution results in loss of GhoT toxicity, ghost cell production and membrane damage while retaining the pole localization. Also, deletion of ghoST or ghoT results in significantly greater initial growth in the presence of antimicrobials. Collectively, these results demonstrate that GhoT reduces metabolism by reducing ATP and PMF and that this reduction in metabolism is important for growth with various antimicrobials.
机译:毒素/抗毒素(TA)系统可能使细胞减少其新陈代谢以应对环境挑战,尽管很少有证据支持该假设。大肠杆菌GhoT / GhoS是一种TA系统,其中毒素GhoT的表达通过抗毒素GhoS的信使RNA(mRNA)的切割而减少,TA系统MqsR / MqsA通过差异的mRNA降解控制GhoT / GhoS。然而,尚未确定GhoT的生理作用。我们在这里通过透射电子显微镜,共聚焦显微镜和荧光染色表明,GhoT通过破坏膜降低了新陈代谢,并且毒素MqsR(5'-GCU特异性内切核糖核酸酶)以GhoT依赖的方式引起了膜损伤。这种膜损伤导致ATP的细胞水平降低和质子动力(PMF)的破坏。通常,GhoT位于极点,在生理条件下不会引起细胞裂解。 F38R取代的引入会导致GhoT毒性损失,虚影细胞产生和膜损伤,同时保留极点定位。同样,在存在抗菌剂的情况下,删除ghoST或ghoT会导致明显更大的初始生长。总的来说,这些结果表明,GhoT通过降低ATP和PMF来降低新陈代谢,并且这种新陈代谢的降低对于各种抗菌素的生长非常重要。

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