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. 2013 Dec;164(10):1019-27.
doi: 10.1016/j.resmic.2013.10.001. Epub 2013 Oct 11.

Motility of Pseudomonas aeruginosa contributes to SOS-inducible biofilm formation

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Free article

Motility of Pseudomonas aeruginosa contributes to SOS-inducible biofilm formation

Shakinah T Chellappa et al. Res Microbiol. 2013 Dec.
Free article

Abstract

DNA-damaging antibiotics such as ciprofloxacin induce biofilm formation and the SOS response through autocleavage of SOS-repressor LexA in Pseudomonas aeruginosa. However, the biofilm-SOS connection remains poorly understood. It was investigated with 96-well and lipid biofilm assays. The effects of ciprofloxacin were examined on biofilm stimulation of the SOS mutant and wild-type strains. The stimulation observed in the wild-type in which SOS was induced was reduced in the mutant in which LexA was made non-cleavable (LexAN) and thus SOS non-inducible. Therefore, the stimulation appeared to involve SOS. The possible mechanisms of inducible biofilm formation were explored by subproteomic analysis of outer membrane fractions extracted from biofilms. The data predicted an inhibitory role of LexA in flagellum function. This premise was tested first by functional and morphological analyses of flagellum-based motility. The flagellum swimming motility decreased in the LexAN strain treated with ciprofloxacin. Second, the motility-biofilm assay was performed, which tested cell migration and biofilm formation. The results showed that wild-type biofilm increased significantly over the LexAN. These results suggest that LexA repression of motility, which is the initial event in biofilm development, contributes to repression of SOS-inducible biofilm formation.

Keywords: Biofilm; DNA damage; DNA replication inhibitor; Flagellum; Motility; Proteomics; Pseudomonas aeruginosa; SOS response.

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