Laboratoire des Interactions Plantes-Microorganismes (LIPM), UMR 441 INRA, Castanet-Tolosan, France, and Laboratoire des Interactions Plantes-Microorganismes (LIPM), UMR 2594 CNRS, Castanet-Tolosan, France.
Laboratoire des Interactions Plantes-Microorganismes (LIPM), UMR 441 INRA, Castanet-Tolosan, France, and Laboratoire des Interactions Plantes-Microorganismes (LIPM), UMR 2594 CNRS, Castanet-Tolosan, France
J Bacteriol. 2014 Jul;196(14):2526-35. doi: 10.1128/JB.01623-14. Epub 2014 May 2.
The EcfG-type sigma factor RpoE2 is the regulator of the general stress response in Sinorhizobium meliloti. RpoE2 activity is negatively regulated by two NepR-type anti-sigma factors (RsiA1/A2), themselves under the control of two anti-anti-sigma factors (RsiB1/B2) belonging to the PhyR family of response regulators. The current model of RpoE2 activation suggests that in response to stress, RsiB1/B2 are activated by phosphorylation of an aspartate residue in their receiver domain. Once activated, RsiB1/B2 become able to interact with the anti-sigma factors and release RpoE2, which can then associate with the RNA polymerase to transcribe its target genes. The purpose of this work was to identify and characterize proteins involved in controlling the phosphorylation status of RsiB1/B2. Using in vivo approaches, we show that the putative histidine kinase encoded by the rsiC gene (SMc01507), located downstream from rpoE2, is able to both positively and negatively regulate the general stress response. In addition, our data suggest that the negative action of RsiC results from inhibition of RsiB1/B2 phosphorylation. From these observations, we propose that RsiC is a bifunctional histidine kinase/phosphatase responsible for RsiB1/B2 phosphorylation or dephosphorylation in the presence or absence of stress, respectively. Two proteins were previously proposed to control PhyR phosphorylation in Caulobacter crescentus and Sphingomonas sp. strain FR1. However, these proteins contain a Pfam:HisKA_2 domain of dimerization and histidine phosphotransfer, whereas S. meliloti RsiC harbors a Pfam:HWE_HK domain instead. Therefore, this is the first report of an HWE_HK-containing protein controlling the general stress response in Alphaproteobacteria.
EcfG 型 sigma 因子 RpoE2 是苜蓿中华根瘤菌中一般应激反应的调节因子。RpoE2 的活性受到两个 NepR 型抗 sigma 因子(RsiA1/A2)的负调控,这两个因子本身受属于 PhyR 家族的两个反抗 sigma 因子(RsiB1/B2)的控制。目前的 RpoE2 激活模型表明,在应激反应中,RsiB1/B2 通过其接收结构域中一个天冬氨酸残基的磷酸化而被激活。一旦被激活,RsiB1/B2 就能与抗 sigma 因子相互作用并释放 RpoE2,然后 RpoE2 可以与 RNA 聚合酶结合,转录其靶基因。本工作的目的是鉴定和表征参与控制 RsiB1/B2 磷酸化状态的蛋白质。通过体内方法,我们表明位于 rpoE2 下游的 rsiC 基因(SMc01507)编码的假定组氨酸激酶既能正向又能负向调节一般应激反应。此外,我们的数据表明,RsiC 的负作用是由于抑制了 RsiB1/B2 的磷酸化。根据这些观察结果,我们提出 RsiC 是一种双功能的组氨酸激酶/磷酸酶,分别负责应激存在或不存在时 RsiB1/B2 的磷酸化或去磷酸化。以前有两种蛋白质被提议控制新月柄杆菌和鞘氨醇单胞菌菌株 FR1 中 PhyR 的磷酸化。然而,这些蛋白含有一个 Pfam:HisKA_2 结构域的二聚化和组氨酸磷酸转移,而 S. meliloti RsiC 则含有一个 Pfam:HWE_HK 结构域。因此,这是第一个报道含有 HWE_HK 结构域的蛋白控制 Alphaproteobacteria 中的一般应激反应的报道。