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首页> 外文期刊>International journal of medical microbiology: IJMM >The ArlR-MgrA regulatory cascade regulates PIA-dependent and protein-mediated biofilm formation in Rbf-dependent and Rbf-independent pathways
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The ArlR-MgrA regulatory cascade regulates PIA-dependent and protein-mediated biofilm formation in Rbf-dependent and Rbf-independent pathways

机译:ARLR-MGRA调节级联调节依赖于RBF依赖性和RBF的途径的PIA依赖性和蛋白质介导的生物膜形成

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The two-component system response regulator ArlR and the global regulator MgrA in Staphylococcus aureus participated in numerous biological processes including biofilm formation inhibition. Previous studies have shown that these two regulators could function as a regulatory cascade. Rbf is a positive regulator of biofilm formation enhancing the production of PIA (polysaccharide intercellular adhesin). Here we have demonstrated that both ArlR and MgrA can directly bind to the promoter of rbf and repress its expression. ArlR and MgrA can also directly bind to the promoter of ica operon and enhance the expression of icaA and PIA production, revealing that the ArlR-MgrA regulatory cascade controls PIA-dependent biofilm formation. In addition, we have found that Rbf can directly bind to the aur promoter and repress the expression of aur, which encodes a protease initiating a protease cascade to inhibit protein-mediated biofilm formation. Moreover, our data indicate that the ArlR-MgrA regulatory cascade can promote the expression of aur by directly binding to its promoter and inhibit protein-mediated biofilm formation. These findings shed light on the molecular mechanisms of both PIA-de-pendent and protein-mediated biofilm formation modulated by the ArlR-MgrA regulatory cascade and the new role of Rbf in protein-mediated biofilm formation, and broaden our understanding of the biofilm formation regulation in S. aureus.
机译:双组分系统响应调节器ARLR和金黄色葡萄球菌中的全球调节器MGRA参与了许多生物过程,包括生物膜形成抑制。以前的研究表明,这两个调节器可以作为监管级联。 RBF是生物膜形成的阳性调节剂,增强了PIA的生产(多糖细胞间粘附素)。在这里,我们已经证明ARLR和MGRA均可直接与RBF的启动子结合并抑制其表达。 ARLR和MGRA还可以直接与ICA操纵子的启动子联系,增强ICAA和PIA生产的表达,揭示ARLR-MGRA调节级联控制PIA依赖的生物膜形成。此外,我们发现RBF可以直接与AUR启动子结合并抑制AUR的表达,其编码引发蛋白酶级联的蛋白酶以抑制蛋白质介导的生物膜形成。此外,我们的数据表明,ARLR-MGRA调节级联通过直接与其启动子直接结合并抑制蛋白质介导的生物膜形成,可以促进Aur的表达。这些发现揭示了通过ARLR-MGRA调节级联调节的PIA-脱膜和蛋白质介导的生物膜形成的分子机制以及RBF在蛋白质介导的生物膜形成的新作用,并扩大了我们对生物膜形成的理解在金黄色葡萄球菌中规定。

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