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The global regulatory system Csr senses glucose through the phosphoenolpyruvate: carbohydrate phosphotransferase system

机译:全球监管系统Csr通过磷酸烯醇丙酮酸:葡萄糖磷酸转移酶系统检测葡萄糖

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摘要

A novel connection between two regulatory systems controlling crucial biological processes in bacteria, the carbon storage regulator (Csr) system and the glucose-specific phosphotransferase system (PTS), is reported by Leng etal. in this issue. This involves the interaction of unphosphorylated EIIA(Glc), a component of the glucose-specific PTS, with the CsrD protein, which accelerates the decay of the CsrB and CsrC small RNAs via RNase E in Escherichia coli. As unphosphorylated EIIA(Glc) is generated in the presence of glucose, the PTS thus acts as a sensor of glucose for the Csr system. Interestingly, another pathway can operate for communication between the Csr system and the glucose-specific PTS. The absence of glucose generates phosphorylated EIIA(Glc), which activates the enzyme adenylate cyclase to produce cyclic adenosine monophosphate (cAMP) that, in turn, binds to the regulator cAMP receptor protein (CRP). Leng etal. show that the complex cAMP-CRP modestly reduces CsrB decay independently of CsrD. On the other hand, a previous study indicates that the complex cAMP-CRP positively regulates the transcription of CsrB and CsrC in Salmonella enterica. Therefore, EIIA(Glc) could work as a molecular switch that regulates the activity of the Csr system, in response to its phosphorylation state determined by the presence or absence of glucose, in order to control gene expression.
机译:Leng等人报道了控制细菌中关键生物学过程的两个调节系统,碳存储调节器(Csr)系统和葡萄糖特异性磷酸转移酶系统(PTS)之间的新型连接。在这个问题上。这涉及到葡萄糖特异性PTS的组成部分未磷酸化的EIIA(Glc)与CsrD蛋白的相互作用,从而通过RNase E在大肠杆菌中加速CsrB和CsrC小RNA的降解。由于在葡萄糖存在下会产生未磷酸化的EIIA(Glc),因此PTS充当Csr系统的葡萄糖传感器。有趣的是,另一种途径可以用于Csr系统和葡萄糖特异性PTS之间的通信。缺少葡萄糖会产生磷酸化的EIIA(Glc),该酶会激活腺苷酸环化酶以产生环状单磷酸腺苷(cAMP),进而与调节剂cAMP受体蛋白(CRP)结合。冷等。结果表明,复杂的cAMP-CRP独立于CsrD适度降低了CsrB衰减。另一方面,先前的研究表明,复杂的cAMP-CRP正调控肠沙门氏菌中CsrB和CsrC的转录。因此,EIIA(Glc)可以作为调节Csr系统活性的分子开关,以响应由葡萄糖存在或不存在决定的磷酸化状态,从而控制基因表达。

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