首页> 外文期刊>Journal of bacteriology >The Pseudomonas aeruginosa Diguanylate Cyclase GcbA, a Homolog of P. fluorescens GcbA, Promotes Initial Attachment to Surfaces, but Not Biofilm Formation, via Regulation of Motility
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The Pseudomonas aeruginosa Diguanylate Cyclase GcbA, a Homolog of P. fluorescens GcbA, Promotes Initial Attachment to Surfaces, but Not Biofilm Formation, via Regulation of Motility

机译:铜绿假单胞菌双鸟苷酸环化酶GcbA,荧光假单胞菌GcbA的同源物,通过运动调节促进表面的最初附着,但不促进生物膜形成。

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Cyclic di-GMP is a conserved signaling molecule regulating the transitions between motile and sessile modes of growth in a variety of bacterial species. Recent evidence suggests that Pseudomonas species harbor separate intracellular pools of c-di-GMP to control different phenotypic outputs associated with motility, attachment, and biofilm formation, with multiple diguanylate cyclases (DGCs) playing distinct roles in these processes, yet little is known about the potential conservation of functional DGCs across Pseudomonas species. In the present study, we demonstrate that the P. aeruginosa homolog of the P. fluorescens DGC GcbA involved in promoting biofilm formation via regulation of swimming motility likewise synthesizes c-di-GMP to regulate surface attachment via modulation of motility, however, without affecting subsequent biofilm formation. P. aeruginosa GcbA was found to regulate flagellum-driven motility by suppressing flagellar reversal rates in a manner independent of viscosity, surface hardness, and polysaccharide production. P. fluorescens GcbA was found to be functional in P. aeruginosa and was capable of restoring phenotypes associated with inactivation of gcbA in P. aeruginosa to wild-type levels. Motility and attachment of a gcbA mutant strain could be restored to wild-type levels via overexpression of the small regulatory RNA RsmZ. Furthermore, epistasis analysis revealed that while both contribute to the regulation of initial surface attachment and flagellum-driven motility, GcbA and the phosphodiesterase DipA act within different signaling networks to regulate these processes. Our findings expand the complexity of c-di-GMP signaling in the regulation of the motile-sessile switch by providing yet another potential link to the Gac/Rsm network and suggesting that distinct c-di-GMP-modulating signaling pathways can regulate a single phenotypic output.
机译:环状di-GMP是一种保守的信号分子,可调节多种细菌物种的能动和无柄生长模式之间的过渡。最近的证据表明,假单胞菌属物种具有独立的c-di-GMP细胞内池,以控制与运动性,附着力和生物膜形成相关的不同表型输出,其中多个双鸟苷酸环化酶(DGC)在这些过程中起着不同的作用,但鲜为人知假单胞菌物种中功能性DGC的潜在保守性。在本研究中,我们证明,通过调节游泳运动来促进生物膜形成的荧光假单胞菌DGC GcbA的铜绿假单胞菌同系物同样合成c-di-GMP,通过调节运动来调节表面附着,但是不影响运动随后的生物膜形成。发现铜绿假单胞菌GcbA通过以与粘度,表面硬度和多糖产生无关的方式抑制鞭毛逆转率来调节鞭毛驱动的运动。发现荧光假单胞菌GcbA在铜绿假单胞菌中具有功能,并且能够将与铜绿假单胞菌的 gcbA 失活相关的表型恢复到野生型水平。 gcbA 突变株的运动性和附着力可以通过小调控RNA RsmZ的过表达恢复到野生型水平。此外,上位性分析显示,虽然两者都有助于调节初始表面附着和鞭毛驱动的运动,但GcbA和磷酸二酯酶DipA在不同的信号网络中起作用以调节这些过程。我们的发现通过提供与Gac / Rsm网络的另一条潜在链接并暗示不同的c-di-GMP调节信号通路可以调节单个C-di-GMP信号通路的复杂性,从而扩展了c-di-GMP信号在运动型无柄开关调控中的复杂性。表型输出。

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