Quorum sensing controls biofilm formation in <i>Vibrio cholerae</i>

Кворумное ощущение контролирует образование биопленок у Vibrio cholerae
Bonnie L. Bassler, Brian K. Hammer
2003-08-20

Vibrio choleraebiofilm formationexopolysaccharide (EPS) productionhapR transcriptional regulatorquorum sensing
Multiple quorum-sensing circuits function in parallel to control virulence and biofilm formation in Vibrio cholerae. In contrast to other bacterial pathogens that induce virulence factor production and/or biofilm formation at high cell density in the presence of quorum-sensing autoinducers, V. cholerae represses these behaviours at high cell density. Consistent with this, we show here that V. cholerae strains 'locked' in the regulatory state mimicking low cell density are enhanced for biofilm production whereas mutants 'locked' in the regulatory state mimicking high cell density are incapable of producing biofilms. The quorum-sensing cascade we have identified in V. cholerae regulates the transcription of genes involved in exopolysaccharide production (EPS), and variants that produce EPS and form biofilms arise at high frequency from non-EPS, non-biofilm producing strains. Our data show that spontaneous mutation of the transcriptional regulator hapR is responsible for this effect. Several toxigenic strains of V. cholerae possess a naturally occurring frameshift mutation in hapR. Thus, the distinct environments occupied by this aquatic pathogen presumably include niches where cell-cell communication is crucial, as well as ones where loss of quorum sensing via hapR mutation confers a selective advantage. Bacterial biofilms could represent a complex habitat where such differentiation occurs.
1
Spontaneous mutation (including a naturally occurring frameshift in some toxigenic strains) in the transcriptional regulator hapR causes loss of quorum sensing and promotes emergence of EPS-producing, biofilm-forming variants.
2
Strains locked in a low-cell-density regulatory state are enhanced for biofilm production, while strains locked in a high-cell-density state cannot produce biofilms.
3
The quorum-sensing cascade regulates transcription of exopolysaccharide (EPS) biosynthesis genes, and EPS-producing, biofilm-forming variants arise at high frequency from non-EPS strains.
4
Unlike many pathogens, V. cholerae represses virulence factor production and biofilm formation at high cell density (in presence of autoinducers).
5
Vibrio cholerae uses multiple parallel quorum-sensing circuits to control virulence and biofilm formation.

Vibrio cholerae (bacterial populations/strains) forming biofilms under different quorum-sensing regulatory states

Control of biofilm formation and exopolysaccharide (EPS) gene transcription by quorum-sensing circuits, including the role of the transcriptional regulator hapR and its loss-of-function mutations

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2003-08-20
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Bonnie L. Bassler
Brian K. Hammer
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