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恶臭假单胞菌的PtsN(EIIA(Ntr))蛋白与其靶标传感器激酶KdpD之间的相互作用。

Interplay of the PtsN (EIIA(Ntr)) protein of Pseudomonas putida with its target sensor kinase KdpD.

作者信息

Deuschle M, Limbrunner S, Rother D, Wahler S, Chavarría M, de Lorenzo V, Kremling A, Pflüger-Grau K

机构信息

Fachgebiet für Systembiotechnologie, Technische Universität München, Garching, Germany.

Escuela de Química & CIPRONA, Universidad de Costa Rica, San José, Costa Rica.

出版信息

Environ Microbiol Rep. 2015 Dec;7(6):899-907. doi: 10.1111/1758-2229.12323. Epub 2015 Aug 27.

Abstract

The nitrogen phosphotransferase system (PTS(Ntr) ) of Pseudomonas putida is a multi-component regulatory device that participates in controlling a variety of physiological processes in a post-translational fashion. A general survey of genes regulated by PtsN exposed transcription of the kdpFABC operon is most conspicuously affected. Measurements of kdpFp promoter activity in different pts mutants showed that PtsN is responsible for repression of kdpFABC transcription. This effect could be assigned mainly to PtsN∼P, depending on the external K(+) concentration. Bacterial two-hybrid assays demonstrated that kdpFp regulation is implemented through direct interaction of the PtsN protein with the sensor kinase KdpD of the KdpD/KdpE two-component system. Interaction between KdpD and PtsN was detectable with a PtsN variant that imitates the non-phosphorylated form as well as with a PtsN type mimicking the phosphorylated form of PtsN. These results raise a regulatory scenario in which the Kdp system is regulated by the action of PtsN through direct interaction with the sensor kinase KdpD, and the outcome of such an interaction depends on the phosphorylation state of PtsN as well as on the external K(+) concentration.

摘要

恶臭假单胞菌的氮磷酸转移酶系统(PTS(Ntr))是一种多组分调节装置,以翻译后方式参与控制多种生理过程。对由PtsN调控的基因进行的全面调查显示,kdpFABC操纵子的转录受到的影响最为显著。对不同pts突变体中kdpFp启动子活性的测量表明,PtsN负责抑制kdpFABC的转录。根据外部K(+)浓度,这种效应主要可归因于PtsN∼P。细菌双杂交试验表明,kdpFp的调控是通过PtsN蛋白与KdpD/KdpE双组分系统的传感激酶KdpD直接相互作用来实现的。KdpD与PtsN之间的相互作用在模仿非磷酸化形式的PtsN变体以及模仿PtsN磷酸化形式的PtsN类型中都可检测到。这些结果提出了一种调控模式,即Kdp系统通过与传感激酶KdpD的直接相互作用受PtsN的作用调控,这种相互作用的结果取决于PtsN的磷酸化状态以及外部K(+)浓度。

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