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Regulatory Themes and Variations by the Stress-Signaling Nucleotide Alarmones (p)ppGpp in Bacteria
Annual Review of Genetics ( IF 11.1 ) Pub Date : 2021-11-23 , DOI: 10.1146/annurev-genet-021821-025827
Brent W Anderson 1 , Danny K Fung 1 , Jue D Wang 1
Affiliation  

Bacterial stress-signaling alarmones are important components of a protective network against diverse stresses such as nutrient starvation and antibiotic assault. pppGpp and ppGpp, collectively (p)ppGpp, have well-documented regulatory roles in gene expression and protein translation. Recent work has highlighted another key function of (p)ppGpp: inducing rapid and coordinated changes in cellular metabolism by regulating enzymatic activities, especially those involved in purine nucleotide synthesis. Failure of metabolic regulation by (p)ppGpp results in the loss of coordination between metabolic and macromolecular processes, leading to cellular toxicity. In this review, we document how (p)ppGpp and newly characterized nucleotides pGpp and (p)ppApp directly regulate these enzymatic targets for metabolic remodeling. We examine targets’ common determinants for alarmone interaction as well as their evolutionary diversification. We highlight classical and emerging themes in nucleotide signaling, including oligomerization and allostery along with metabolic interconversion and crosstalk, illustrating how they allow optimized bacterial adaptation to their environmental niches.

中文翻译:


细菌中应激信号核苷酸报警素 (p)ppGpp 的调节主题和变化

细菌应激信号报警素是抵御营养饥饿和抗生素攻击等多种应激的保护网络的重要组成部分。pppGpp 和 ppGpp 统称为 (p)ppGpp,在基因表达和蛋白质翻译中具有明确的调节作用。最近的工作强调了 (p)ppGpp 的另一个关键功能:通过调节酶活性,特别是那些涉及嘌呤核苷酸合成的酶活性,诱导细胞代谢的快速协调变化。(p)ppGpp 代谢调节失败会导致代谢和大分子过程之间失去协调,从而导致细胞毒性。在这篇综述中,我们记录了 (p)ppGpp 和新表征的核苷酸 pGpp 和 (p)ppApp 如何直接调节这些代谢重塑的酶靶标。我们研究了目标的警报素相互作用的共同决定因素以及它们的进化多样化。我们重点介绍核苷酸信号传导中的经典和新兴主题,包括寡聚化和变构以及代谢互变和串扰,说明它们如何优化细菌适应其环境生态位。

更新日期:2021-11-24
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