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Published on: January 9, 2013
Candida albicans Sap6 Initiates Oral Mucosal Inflammation via the Protease Activated Receptor PAR2
Rohitashw Kumar1, Isolde Gina Rojas1, Mira Edgerton1
1Department of Oral Biology, University at Buffalo, Buffalo, NY, United States.
Abstract:
Candida albicans Sap6, a secreted aspartyl protease (Sap), contributes to fungal virulence in oral candidiasis. Beside its protease activity, Sap6 contains RGD (RGDRGD) motif required for its binding to host integrins. Sap6 activates immune cells to induce proinflammatory cytokines, although its ability to interact and activate human oral epithelial cells (OECs) remain unknown. Addition of purified recombinant Sap6 (rSap6) to OECs resulted in production of IL-1β and IL-8 cytokines similar to live hyphal C. albicans. OECs exposed to rSap6 showed phosphorylation of p38 and MKP1 and expression of c-Fos not found with C. albicans Δsap6, heat-inactivated Sap6, or rSap6ΔRGD . Heat inactivated rSap6 was able to induce IL-1β but not IL-8 in OECs, while rSap6ΔRGD induced IL-8 but not IL-1β suggesting parallel signaling pathways. C. albicans hyphae increased surface expression of Protease Activated Receptors PAR1, PAR2 and PAR3, while rSap6 increased PAR2 expression exclusively. Pretreatment of OECs with a PAR2 antagonist blocked rSap6-induced p38 MAPK signaling and IL-8 release, while rSap6ΔRGD had reduced MKP1 signaling and IL-1β release independent from PAR2. OECs exposed to rSap6 exhibited loss of barrier function as measured by TEER and reduction in levels of E-cadherin and occludin junctional proteins that was prevented by pretreating OECs with a PAR2 antagonist. OECs treated with PAR2 antagonist also showed reduced rSap6-mediated invasion by C. albicans cells. Thus, Sap6 may initiate OEC responses mediated both through protease activation of PAR2 and by its RGD domain. This novel role of PAR2 suggests new drug targets to block C. albicans oral infection.
Insights
Candida albicans Sap6 protease activates oral epithelial cells via Protease Activated Receptor 2 (PAR2) and RGD motif, leading to inflammation and barrier dysfunction. This reveals new therapeutic targets for oral candidiasis.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Candida albicans Sap6 is a secreted aspartyl protease contributing to oral candidiasis virulence.
- Sap6 possesses a RGD motif for host integrin binding and activates immune cells, but its effect on oral epithelial cells (OECs) is unknown.
Purpose of the Study:
- To investigate the interaction and activation of human oral epithelial cells (OECs) by Candida albicans Sap6.
- To elucidate the signaling pathways and molecular mechanisms underlying Sap6-mediated OEC responses.
Main Methods:
- Addition of purified recombinant Sap6 (rSap6) to OECs.
- Analysis of cytokine production (IL-1β, IL-8), MAPK signaling (p38, MKP1), and transcription factor expression (c-Fos).
- Investigation of Protease Activated Receptor (PAR) expression and function, barrier integrity (TEER, junctional proteins), and fungal invasion.
Main Results:
- rSap6 induced IL-1β and IL-8 production in OECs, similar to live C. albicans.
- rSap6 activated p38 MAPK signaling and increased PAR2 expression exclusively.
- PAR2 antagonism blocked rSap6-induced IL-8 release, p38 signaling, barrier dysfunction, and C. albicans invasion.
Conclusions:
- Candida albicans Sap6 initiates OEC responses through both its protease activity activating PAR2 and its RGD domain.
- PAR2 plays a critical role in Sap6-mediated inflammation, barrier disruption, and fungal invasion in oral candidiasis.
- Targeting PAR2 presents a novel therapeutic strategy to combat C. albicans oral infections.
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