首页> 外文期刊>Environmental microbiology >Control of pellicle biogenesis involves the diguanylate cyclases PdgA and PdgB, the c-di-GMP binding protein MxdA and the chemotaxis response regulator CheY3 in Shewanella oneidensis
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Control of pellicle biogenesis involves the diguanylate cyclases PdgA and PdgB, the c-di-GMP binding protein MxdA and the chemotaxis response regulator CheY3 in Shewanella oneidensis

机译:薄膜生物发生的控制涉及Diguanyly环酶PDGA和PDGB,C-DI-GMP结合蛋白MXDA和Chechotaella Inidensis的C-Di-GMP结合蛋白MXDA和趋化性反应调节剂Chey3

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摘要

Shewanella oneidensis is an aquatic proteobacterium with remarkable respiratory and chemotactic abilities. It is also capable of forming biofilms either associated to surfaces (SSA-biofilm) or at the air-liquid interface (pellicle). We have previously shown that pellicle biogenesis in S. oneidensis requires the flagellum and the chemotaxis regulatory system including CheA3 kinase and CheY3 response regulator. Here we searched for additional factors involved in pellicle development. Using a multicopy library of S. oneidensis chromosomal fragments, we identified two genes encoding putative diguanylate cyclases (pdgA and pdgB) and allowing pellicle formation in the non-pellicle-forming cheY3-deleted mutant. A mutant deleted of both pdgA and pdgB is affected during pellicle development. By overexpressing phosphodiesterase encoding genes, we confirmed the key role of c-di-GMP in pellicle biogenesis. The mxd operon, previously proposed to encode proteins involved in exopolysaccharide biosynthesis, is also essential for pellicle formation. In addition, we showed that the MxdA protein, containing a degenerate GGDEF motif, binds c-di-GMP and interacts with both CheY3 and PdgA. Therefore, we propose that pellicle biogenesis in S. oneidensis is controlled by a complex pathway that involves the chemotaxis response regulator CheY3, the two putative diguanylate cyclases PdgA and PdgB, and the c-di-GMP binding protein MxdA.
机译:雪松oneidensis是一种水生植物,具有显着的呼吸和趋化能力。它还能够形成与表面(SSA-Biofilm)或空气液体界面(薄膜)相关的生物膜。我们以前表明,S. onidensis的薄膜生物发生要求鞭毛和趋化性调节系统,包括Chea3激酶和Chey3反应调节剂。在这里,我们搜索了涉及薄膜开发的其他因素。使用S.Inidensis染色体片段的多拷贝库,我们鉴定了一种编码推定的Diguantyly基环酶(PDGA和PDGB)的两个基因,并允许在非薄膜形成Chey3缺失的突变体中形成薄膜。薄膜发育期间,PDGA和PDGB缺失的突变体受到影响。通过过度表达磷酸二酯酶编码基因,我们证实了C-Di-GMP在薄膜生物发生中的关键作用。以前提出编码参与潜水糖生物合成的蛋白质的MXD操纵子对薄膜形成也是必不可少的。此外,我们表明,含有退化GGDEF基序的MXDA蛋白结合C-DI-GMP并与CHEY3和PDGA相互作用。因此,我们提出了S. onidensis中的薄膜生物发生是由涉及趋化性的途径来控制,该途径涉及趋化性响应调节剂Chey3,这两个推定的达瓜酸盐环酶PDGA和PDGB,以及C-DI-GMP结合蛋白MXDA。

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