首页> 外文期刊>Molecular Microbiology >Binding of response regulator DegU to the aprE promoter is inhibited by RapG, which is counteracted by extracellular PhrG in Bacillus subtilis
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Binding of response regulator DegU to the aprE promoter is inhibited by RapG, which is counteracted by extracellular PhrG in Bacillus subtilis

机译:RapG抑制应答调节剂DegU与aprE启动子的结合,而枯草芽孢杆菌中的细胞外PhrG则抵消了RapG

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We screened the putative rap-phr (response regulator aspartyl-phosphate phosphatase-phosphatase regulator) systems identified in the Bacillus subtilis genome for a rap gene that affects aprE ( alkaline protease gene) expression by using a multicopy plasmid. We found that rapG was involved in the regulation of aprE, which belongs to the regulon of DegU, the response regulator of the DegS-DegU two-component system. Disruption of rapG and phrG resulted in enhancement and reduction of aprE-lacZ expression, respectively, suggesting that PhrG inhibits RapG activity. Addition of 1 - 30 nM of a synthetic pentapeptide (PhrG; NH2-EKMIG-COOH) to the phrG disruptant completely rescued aprE-lacZ expression, indicating that the PhrG peptide is indeed involved in aprE-lacZ expression. Surprisingly, either introduction of multicopy phrG or addition of the PhrG peptide at high concentrations ( 100 - 300 nM) to the phrG cells decreased aprE-lacZ expression. These results are reminiscent of the previous observation that at higher concentrations the PhrC peptide inhibits srfA-lacZ expression directed by ComA, the regulator of the ComP-ComA two-component system. Because the Rap proteins belong to a family of aspartyl protein phosphatases, we tried to investigate the possible influence of RapG on dephosphorylation of DegU-P ( phosphorylated DegU) in vitro. RapG, however, did not affect dephosphorylation of DegU-P under the adopted experimental conditions. Therefore, we hypothesized that RapG might inhibit the binding activity of DegU to the target promoters. We analysed the interaction of DegU and RapG using the aprE promoter and another target, a comK promoter. Gel shift analysis revealed that RapG served as the inhibitor of DegU binding to the promoter regions of aprE and comK and that this inhibition was counteracted by the PhrG peptide. [References: 49]
机译:我们筛选了在枯草芽孢杆菌基因组中确定的rap-phr(应答调节剂天冬氨酰-磷酸磷酸酶-磷酸酶调节剂)系统,以寻找通过使用多拷贝质粒影响aprE(碱性蛋白酶基因)表达的rap基因。我们发现rapG参与了对aprE的调节,而aprE属于DegU的调节子,它是DegS-DegU两组分系统的响应调节剂。 rapG和phrG的破坏分别导致aprE-lacZ表达的增强和降低,表明PhrG抑制RapG活性。向phrG破坏剂中添加1-30 nM合成五肽(PhrG; NH2-EKMIG-COOH)可以完全拯救aprE-lacZ表达,表明PhrG肽确实参与了aprE-lacZ表达。令人惊讶地,向phrG细胞中引入多拷贝phrG或以高浓度(100-300nM)添加PhrG肽降低了aprE-lacZ表达。这些结果让人想起以前的观察,即在较高浓度下,PhrC肽会抑制由ComA(ComP-ComA两组分系统的调节剂)控制的srfA-lacZ表达。由于Rap蛋白属于天冬氨酰蛋白磷酸酶的一个家族,我们试图研究RapG对DegU-P(磷酸化DegU)的去磷酸化的可能影响。然而,RapG在采用的实验条件下不影响DegU-P的去磷酸化。因此,我们假设RapG可能抑制DegU与目标启动子的结合活性。我们使用aprE启动子和另一个目标comK启动子分析了DegU和RapG的相互作用。凝胶位移分析显示,RapG充当DegU结合到aprE和comK的启动子区域的抑制剂,并且该抑制被PhrG肽抵消。 [参考:49]

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