Visaggio Daniela, Pasqua Martina, Bonchi Carlo, Kaever Volkhard, Visca Paolo, Imperi Francesco
Department of Biology and Biotechnology "Charles Darwin", Sapienza University of Rome Rome, Italy ; Department of Sciences, Universita degli Studi Roma Tre Rome, Italy.
Department of Biology and Biotechnology "Charles Darwin", Sapienza University of Rome Rome, Italy.
Front Microbiol. 2015 Aug 28;6:902. doi: 10.3389/fmicb.2015.00902. eCollection 2015.
In Pseudomonas aeruginosa the Gac signaling system and the second messenger cyclic diguanylate (c-di-GMP) participate in the control of the switch between planktonic and biofilm lifestyles, by regulating the production of the two exopolysaccharides Pel and Psl. The Gac and c-di-GMP regulatory networks also coordinately promote the production of the pyoverdine siderophore, and the extracellular polysaccharides Pel and Psl have recently been found to mediate c-di-GMP-dependent regulation of pyoverdine genes. Here we demonstrate that Pel and Psl are also essential for Gac-mediated activation of pyoverdine production. A pel psl double mutant produces very low levels of pyoverdine and shows a marked reduction in the expression of the pyoverdine-dependent virulence factors exotoxin A and PrpL protease. While the exopolysaccharide-proficient parent strain forms multicellular planktonic aggregates in liquid cultures, the Pel and Psl-deficient mutant mainly grows as dispersed cells. Notably, artificially induced cell aggregation is able to restore pyoverdine-dependent gene expression in the pel psl mutant, in a way that appears to be independent of iron diffusion or siderophore signaling, as well as of recently described contact-dependent mechanosensitive systems. This study demonstrates that cell aggregation represents an important cue triggering the expression of pyoverdine-related genes in P. aeruginosa, suggesting a novel link between virulence gene expression, cell-cell interaction and the multicellular community lifestyle.
在铜绿假单胞菌中,Gac信号系统和第二信使环二鸟苷酸(c-di-GMP)通过调节两种胞外多糖Pel和Psl的产生,参与浮游和生物膜生活方式之间转换的控制。Gac和c-di-GMP调控网络还协同促进绿脓菌素铁载体的产生,最近发现胞外多糖Pel和Psl介导c-di-GMP对绿脓菌素基因的调控。在此,我们证明Pel和Psl对于Gac介导的绿脓菌素产生激活也是必不可少的。pel psl双突变体产生的绿脓菌素水平非常低,并且绿脓菌素依赖性毒力因子外毒素A和PrpL蛋白酶的表达显著降低。虽然胞外多糖丰富的亲本菌株在液体培养物中形成多细胞浮游聚集体,但缺乏Pel和Psl的突变体主要以分散的细胞形式生长。值得注意的是,人工诱导的细胞聚集能够恢复pel psl突变体中绿脓菌素依赖性基因的表达,其方式似乎独立于铁扩散或铁载体信号传导,以及最近描述的接触依赖性机械敏感系统。这项研究表明,细胞聚集是触发铜绿假单胞菌中绿脓菌素相关基因表达的重要线索,提示了毒力基因表达、细胞间相互作用与多细胞群落生活方式之间的新联系。