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Regulation of carbon and nitrogen metabolism: Adding regulation of ion channels and another second messenger to the mix

机译:碳和氮代谢的调节:添加离子通道和另一个第二信使的混合物

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The regulation of metabolism in bacteria is accomplished by a complex array of signal transduc-tion systems, metabolic interactions, and gene regulatory relationships. For example, maintenance of the balance of carbon and nitrogen metabolism involves (as a partial list) ppGpp, cAMP, the NtrBC two-component system and the coupled Nac-controlled regulon, the leucine-responsive protein LRP, the carbohydrate phosphotransferase system (PTS), and a parallel PTS that has been referred to as the nitrogen PTS. Understanding how these signaling and regulatory systems function to coordinate metabolism remains a significant challenge. In a recent issue of PNAS, Lee et al. (1) show for the first time one of the ways that the nitrogen PTS plays a role in regulating gene expression and metabolism. It does so by regulating an ion channel that is the major K~+ transporter, TrkA. Apparently, K~+ is a second messenger controlling gene expression and enzyme activity in bacteria.
机译:细菌中新陈代谢的调节是通过一系列复杂的信号转导系统,新陈代谢相互作用和基因调节关系来完成的。例如,维持碳和氮代谢的平衡涉及(作为部分清单)ppGpp,cAMP,NtrBC两组分系统和偶联的Nac控制的调节子,亮氨酸响应蛋白LRP,碳水化合物磷酸转移酶系统(PTS) ),以及称为NPT的并行PTS。理解这些信号和调节系统如何协调新陈代谢仍然是一个重大挑战。在最近出版的PNAS中,Lee等人。 (1)首次显示了氮PTS在调节基因表达和代谢中起作用的一种方式。它是通过调节离子通道来实现的,该离子通道是主要的K +转运蛋白TrkA。显然,K +是控制细菌中基因表达和酶活性的第二信使。

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