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Concentration matters!! ppGpp, from a whispering to a strident alarmone.

机译:浓度很重要!! ppGpp,从低语到突然的警报。

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Bacteria have developed sophisticated signal transduction pathways to sense and respond to environmental stresses. These pathways include intracellular regulators that elicit adaptive changes in the physiology of the cell. Extensive work, mostly performed in Escherichia coli, showed that the modified nucleotide ppGpp plays a key regulatory role by co-ordinating the cellular responses to adverse environmental conditions. In this issue of Molecular Microbiology, Traxler et al. define two sets of ppGpp-dependent genes that are expressed at different times after induction of ppGpp synthesis. Their results suggest that quantitative differences in the ppGpp intracellular concentration determine the precise pattern of gene expression during adaptation process: low levels of ppGpp suffice to activate the Lrp regulon, which, by activating the synthesis of some amino acid pathways, can generate a negative feedback loop while high levels activate RpoS and a feed-forward amplification of the general stress response. These dose-dependent effects on gene expression open new perspectives on the complex regulatory pathways mediated by ppGpp during environmental adaptation.
机译:细菌已经开发出复杂的信号转导途径来感知和响应环境压力。这些途径包括引起细胞生理适应性改变的细胞内调节剂。广泛的工作(主要在大肠杆菌中进行)表明,修饰的核苷酸ppGpp通过协调细胞对不利环境条件的反应,发挥了关键的调节作用。在本期《分子微生物学》中,Traxler等人。定义了两组ppGpp依赖性基因,它们在ppGpp合成诱导后的不同时间表达。他们的结果表明,ppGpp细胞内浓度的定量差异决定了适应过程中基因表达的精确模式:低水平的ppGpp足以激活Lrp regulon,而后者通过激活某些氨基酸途径的合成,可以产生负反馈。循环,而高水平激活RpoS和一般应激反应的前馈放大。这些对基因表达的剂量依赖性效应为在环境适应过程中ppGpp介导的复杂调控途径开辟了新的视角。

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