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鉴定大肠杆菌中新型营养感应组氨酸激酶/反应调节蛋白网络。

Identification of a novel nutrient-sensing histidine kinase/response regulator network in Escherichia coli.

机构信息

Munich Center for Integrated Protein Science (CIPSM) at the Department of Microbiology, Ludwig-Maximilians-Universität München, Martinsried, Germany.

出版信息

J Bacteriol. 2014 Jun;196(11):2023-9. doi: 10.1128/JB.01554-14. Epub 2014 Mar 21.

Abstract

When carbon sources become limiting for growth, bacteria must choose which of the remaining nutrients should be used first. We have identified a nutrient-sensing signaling network in Escherichia coli that is activated at the transition to stationary phase. The network is composed of the two histidine kinase/response regulator systems YehU/YehT and YpdA/YpdB and their target proteins, YjiY and YhjX (both of which are membrane-integrated transporters). The peptide/amino acid-responsive YehU/YehT system was found to have a negative effect on expression of the target gene, yhjX, of the pyruvate-responsive YpdA/YpdB system, while the YpdA/YpdB system stimulated expression of yjiY, the target of the YehU/YehT system. These effects were confirmed in mutants lacking any of the genes for the three primary components of either system. Furthermore, an in vivo interaction assay based on bacterial adenylate cyclase detected heteromeric interactions between the membrane-bound components of the two systems, specifically, between the two histidine kinases and the two transporters, which is compatible with the formation of a larger signaling unit. Finally, the carbon storage regulator A (CsrA) was shown to be involved in posttranscriptional regulation of both yjiY and yhjX.

摘要

当碳源成为生长的限制因素时,细菌必须选择首先利用剩余的哪种营养物质。我们已经确定了大肠杆菌中一种营养感应信号网络,该网络在进入稳定期时被激活。该网络由两个组氨酸激酶/响应调节系统 YehU/YehT 和 YpdA/YpdB 及其靶蛋白 YjiY 和 YhjX(均为膜整合转运蛋白)组成。发现肽/氨基酸响应的 YehU/YehT 系统对受丙酮酸响应的 YpdA/YpdB 系统的靶基因 yhjX 的表达有负向影响,而 YpdA/YpdB 系统则刺激 YehU/YehT 系统的靶基因 yjiY 的表达。这些效应在缺失任一系统的三个主要成分的突变体中得到了证实。此外,基于细菌腺苷酸环化酶的体内相互作用测定检测到了两个系统的膜结合成分之间的异源二聚体相互作用,特别是两个组氨酸激酶和两个转运蛋白之间的相互作用,这与形成更大的信号单元是一致的。最后,发现碳储存调节剂 A(CsrA)参与了 yjiY 和 yhjX 的转录后调控。

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