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铜绿假单胞菌生物膜基质中的pel 多糖可发挥结构和保护作用。

The pel polysaccharide can serve a structural and protective role in the biofilm matrix of Pseudomonas aeruginosa.

机构信息

Department of Microbiology, University of Washington, Seattle, Washington, United States of America.

出版信息

PLoS Pathog. 2011 Jan 27;7(1):e1001264. doi: 10.1371/journal.ppat.1001264.

Abstract

Bacterial extracellular polysaccharides are a key constituent of the extracellular matrix material of biofilms. Pseudomonas aeruginosa is a model organism for biofilm studies and produces three extracellular polysaccharides that have been implicated in biofilm development, alginate, Psl and Pel. Significant work has been conducted on the roles of alginate and Psl in biofilm development, however we know little regarding Pel. In this study, we demonstrate that Pel can serve two functions in biofilms. Using a novel assay involving optical tweezers, we demonstrate that Pel is crucial for maintaining cell-to-cell interactions in a PA14 biofilm, serving as a primary structural scaffold for the community. Deletion of pelB resulted in a severe biofilm deficiency. Interestingly, this effect is strain-specific. Loss of Pel production in the laboratory strain PAO1 resulted in no difference in attachment or biofilm development; instead Psl proved to be the primary structural polysaccharide for biofilm maturity. Furthermore, we demonstrate that Pel plays a second role by enhancing resistance to aminoglycoside antibiotics. This protection occurs only in biofilm populations. We show that expression of the pel gene cluster and PelF protein levels are enhanced during biofilm growth compared to liquid cultures. Thus, we propose that Pel is capable of playing both a structural and a protective role in P. aeruginosa biofilms.

摘要

细菌细胞外多糖是生物膜细胞外基质材料的重要组成部分。铜绿假单胞菌是生物膜研究的模式生物,它产生三种细胞外多糖,这些多糖被认为与生物膜的发育有关,分别是藻酸盐、Psl 和 Pel。藻酸盐和 Psl 在生物膜发育中的作用已经进行了大量研究,但我们对 Pel 知之甚少。在这项研究中,我们证明了 Pel 在生物膜中可以发挥两种功能。我们使用一种涉及光镊的新测定方法,证明 Pel 对于维持 PA14 生物膜中的细胞间相互作用至关重要,它是群落的主要结构支架。pelB 的缺失导致生物膜严重缺乏。有趣的是,这种效应是菌株特异性的。在实验室菌株 PAO1 中失去 Pel 产生,在附着或生物膜发育方面没有差异;相反,Psl 被证明是生物膜成熟的主要结构多糖。此外,我们证明 Pel 通过增强对抗生素氨基糖苷类的抗性来发挥第二种作用。这种保护仅发生在生物膜群体中。我们表明,与液体培养相比,pel 基因簇的表达和 PelF 蛋白水平在生物膜生长过程中增强。因此,我们提出 Pel 能够在铜绿假单胞菌生物膜中发挥结构和保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be6/3029257/379430811364/ppat.1001264.g001.jpg

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