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Analysis of Pseudomonas aeruginosa Conditional Psl Variants Reveals Roles for the Psl Polysaccharide in Adhesion and Maintaining Biofilm Structure Postattachment

机译:铜绿假单胞菌的条件性Psl变体的分析揭示了Psl多糖在粘附中的作用并在附着后保持生物膜结构。

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摘要

The ability to form biofilms in the airways of people suffering from cystic fibrosis is a critical element of Pseudomonas aeruginosa pathogenesis. The 15-gene psl operon encodes a putative polysaccharide that plays an important role in biofilm initiation in nonmucoid P. aeruginosa strains. Biofilm initiation by a P. aeruginosa PAO1 strain with disruption of pslA and pslB (ΔpslAB) was severely compromised, indicating that psl has a role in cell-surface interactions. In this study, we investigated the adherence properties of this ΔpslAB mutant using biotic surfaces (epithelial cells and mucin-coated surfaces) and abiotic surfaces. Our results showed that psl is required for attachment to a variety of surfaces, independent of the carbon source. To study the potential roles of Psl apart from attachment, we generated a psl-inducible P. aeruginosa strain (Δpsl/pBAD-psl) by replacing the psl promoter region with araC-pBAD, so that expression of psl could be controlled by addition of arabinose. Analysis of biofilms formed by the Δpsl/pBAD-psl strain indicated that expression of the psl operon is required to maintain the biofilm structure at steps postattachment. Overproduction of the Psl polysaccharide led to enhanced cell-surface and intercellular adhesion of P. aeruginosa. This translated into significant changes in the architecture of the biofilm. We propose that Psl has an important role in P. aeruginosa adhesion, which is critical for initiation and maintenance of the biofilm structure.
机译:在患有囊性纤维化的人的气道中形成生物膜的能力是铜绿假单胞菌发病机理的关键要素。具有15个基因的psl操纵子编码一种假定的多糖,该多糖在非粘液性铜绿假单胞菌菌株的生物膜启动中起重要作用。严重破坏了铜绿假单胞菌PAO1菌株破坏pslA和pslB(ΔpslAB)的生物膜启动能力,表明psl在细胞表面相互作用中起作用。在这项研究中,我们使用生物表面(上皮细胞和粘蛋白包被的表面)和非生物表面研究了该ΔpslAB突变体的粘附特性。我们的结果表明,psl是附着到各种表面上所必需的,而与碳源无关。为了研究除附着外Psl的潜在作用,我们用 araC -p BAD < / em>,因此 psl 的表达可以通过添加阿拉伯糖来控制。对由Δ psl / p BAD - psl 菌株形成的生物膜的分析表明, psl 操纵子的表达为在附着后的步骤中需要维持生物膜结构。 Psl多糖的过量生产导致 P的细胞表面和细胞间粘附增强。铜绿。这转化为生物膜结构的重大变化。我们建议Psl在 P中起重要作用。铜绿假单胞菌粘附,这对于启动和维持生物膜结构至关重要。

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