Repression of VvpM Protease Expression by Quorum Sensing and the cAMP-cAMP Receptor Protein Complex in Vibrio

Jeong-A Kim1, Mi-Ae Lee1, You-Chul Jung1

  • 1Department of Life Science, Sogang University, Seoul, South Korea.

Journal of Bacteriology
|January 18, 2018
PubMed

Insights

Vibrio vulnificus exoprotease VvpM expression is repressed by SmcR and cAMP-CRP, unlike other Vvp proteases. This differential regulation allows VvpM to engage in specific interactions with hosts during early infection stages.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Pathogen-Host Interactions

Background:

  • Vibrio vulnificus produces multiple exoproteases (VvpE, VvpS, VvpM) crucial for host cell interactions.
  • VvpE and VvpS expression is regulated by sigma factor S, SmcR, and cAMP-CRP during the stationary phase.
  • VvpM exhibits distinct roles, including apoptosis induction, suggesting unique regulatory control.

Purpose of the Study:

  • To investigate the differential regulation of VvpM expression in Vibrio vulnificus.
  • To identify transcription factors controlling VvpM gene expression.
  • To elucidate the regulatory mechanism contrasting with other Vvp exoproteases.

Main Methods:

  • Analysis of VvpM transcription initiation and dependence on sigma S.
  • Investigating the roles of SmcR and cAMP-CRP in VvpM regulation.
  • Utilizing single and double mutants (smcR, crp) to assess gene expression levels.

Main Results:

  • VvpM transcription is sigma S-independent, induced in the early exponential phase, and repressed by SmcR and cAMP-CRP.
  • SmcR and cAMP-CRP bind to specific regions upstream of the VvpM transcription start site.
  • A smcR crp double mutant showed significantly higher VvpM derepression compared to single mutants.

Conclusions:

  • Vibrio vulnificus exoprotease expression is differentially regulated, with VvpM exhibiting unique repression mechanisms.
  • Repression by SmcR and cAMP-CRP controls VvpM production during early growth phases.
  • Differential protease regulation enables specific pathogen-host interactions.

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