4.4 Article

Role of the Clp system in stress tolerance, Biofilm formation, and intracellular invasion in Porphyromonas gingivalis

Journal

JOURNAL OF BACTERIOLOGY
Volume 190, Issue 4, Pages 1436-1446

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/JB.01632-07

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Funding

  1. NIDCR NIH HHS [DE11111, R01 DE012505, R37 DE011111, DE12505, DE14605, R01 DE011111, R01 DE014605] Funding Source: Medline

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Clp proteases and chaperones are ubiquitous among prokaryotes and eukaryotes, and in many pathogenic bacteria the Clp stress response system is also involved in regulation of virulence properties. In this study, the roles of ClpB, ClpC, and ClpXP in stress resistance, homotypic and heterotypic biofilm formation, and intracellular invasion in the oral opportunistic pathogen Porphyromonas gingivalis were investigated. Absence of ClpC and ClpXP, but not ClpB, resulted in diminished tolerance to high temperatures. Response to oxidative stress was not affected by the loss of any of the Clp proteins. The clpC and clpXP mutants demonstrated elevated monospecies biofilm formation, and the absence of ClpXP also enhanced heterotypic P. gingivalis-Streptococcus gordonii biofilm formation. All clp mutants adhered to gingival epithelial cells to the same level as the wild type; however, ClpC and ClpXP were found to be necessary for entry into host epithelial cells. CIpB did not play a role in entry but was required for intracellular replication and survival. ClpXP negatively regulated the surface exposure of the minor fimbrial (Mfa) protein subunit of P. gingivalis, which stimulates biofilm formation but interferes with epithelial cell entry. Collectively, these results show that the Clp protease complex and chaperones control several processes that are important for the colonization and survival of P. gingivalis in the oral cavity.

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