Positive role of cell wall anchored proteinase PrtP in adhesion of lactococci

<p>Abstract</p> <p>Background</p> <p>The first step in biofilm formation is bacterial attachment to solid surfaces, which is dependent on the cell surface physico-chemical properties. Cell wall anchored proteins (CWAP) are among the known adhesins that confer the adhesi...

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Main Authors: Buist Girbe, Bellon-Fontaine Marie-Noëlle, Juillard Vincent, Le Goff Carine, Habimana Olivier, Kulakauskas Saulius, Briandet Romain
Format: Article
Language:English
Published: BMC 2007-05-01
Series:BMC Microbiology
Online Access:http://www.biomedcentral.com/1471-2180/7/36
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author Buist Girbe
Bellon-Fontaine Marie-Noëlle
Juillard Vincent
Le Goff Carine
Habimana Olivier
Kulakauskas Saulius
Briandet Romain
author_facet Buist Girbe
Bellon-Fontaine Marie-Noëlle
Juillard Vincent
Le Goff Carine
Habimana Olivier
Kulakauskas Saulius
Briandet Romain
author_sort Buist Girbe
collection DOAJ
description <p>Abstract</p> <p>Background</p> <p>The first step in biofilm formation is bacterial attachment to solid surfaces, which is dependent on the cell surface physico-chemical properties. Cell wall anchored proteins (CWAP) are among the known adhesins that confer the adhesive properties to pathogenic Gram-positive bacteria. To investigate the role of CWAP of non-pathogen Gram-positive bacteria in the initial steps of biofilm formation, we evaluated the physico-chemical properties and adhesion to solid surfaces of <it>Lactococcus lactis</it>. To be able to grow in milk this dairy bacterium expresses a cell wall anchored proteinase PrtP for breakdown of milk caseins.</p> <p>Results</p> <p>The influence of the anchored cell wall proteinase PrtP on microbial surface physico-chemical properties, and consequently on adhesion, was evaluated using lactococci carrying different alleles of <it>prtP</it>. The presence of cell wall anchored proteinase on the surface of lactococcal cells resulted in an increased affinity to solvents with different physico-chemical properties (apolar and Lewis acid-base solvents). These properties were observed regardless of whether the PrtP variant was biologically active or not, and were not observed in strains without PrtP. Anchored PrtP displayed a significant increase in cell adhesion to solid glass and tetrafluoroethylene surfaces.</p> <p>Conclusion</p> <p>Obtained results indicate that exposure of an anchored cell wall proteinase PrtP, and not its proteolytic activity, is responsible for greater cell hydrophobicity and adhesion. The increased bacterial affinity to polar and apolar solvents indicated that exposure of PrtP on lactococcal cell surface could enhance the capacity to exchange attractive van der Waals interactions, and consequently increase their adhesion to different types of solid surfaces and solvents.</p>
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spelling doaj.art-f4cb3828c4e94242a8b3fd646e7f36f12022-12-21T19:13:47ZengBMCBMC Microbiology1471-21802007-05-01713610.1186/1471-2180-7-36Positive role of cell wall anchored proteinase PrtP in adhesion of lactococciBuist GirbeBellon-Fontaine Marie-NoëlleJuillard VincentLe Goff CarineHabimana OlivierKulakauskas SauliusBriandet Romain<p>Abstract</p> <p>Background</p> <p>The first step in biofilm formation is bacterial attachment to solid surfaces, which is dependent on the cell surface physico-chemical properties. Cell wall anchored proteins (CWAP) are among the known adhesins that confer the adhesive properties to pathogenic Gram-positive bacteria. To investigate the role of CWAP of non-pathogen Gram-positive bacteria in the initial steps of biofilm formation, we evaluated the physico-chemical properties and adhesion to solid surfaces of <it>Lactococcus lactis</it>. To be able to grow in milk this dairy bacterium expresses a cell wall anchored proteinase PrtP for breakdown of milk caseins.</p> <p>Results</p> <p>The influence of the anchored cell wall proteinase PrtP on microbial surface physico-chemical properties, and consequently on adhesion, was evaluated using lactococci carrying different alleles of <it>prtP</it>. The presence of cell wall anchored proteinase on the surface of lactococcal cells resulted in an increased affinity to solvents with different physico-chemical properties (apolar and Lewis acid-base solvents). These properties were observed regardless of whether the PrtP variant was biologically active or not, and were not observed in strains without PrtP. Anchored PrtP displayed a significant increase in cell adhesion to solid glass and tetrafluoroethylene surfaces.</p> <p>Conclusion</p> <p>Obtained results indicate that exposure of an anchored cell wall proteinase PrtP, and not its proteolytic activity, is responsible for greater cell hydrophobicity and adhesion. The increased bacterial affinity to polar and apolar solvents indicated that exposure of PrtP on lactococcal cell surface could enhance the capacity to exchange attractive van der Waals interactions, and consequently increase their adhesion to different types of solid surfaces and solvents.</p>http://www.biomedcentral.com/1471-2180/7/36
spellingShingle Buist Girbe
Bellon-Fontaine Marie-Noëlle
Juillard Vincent
Le Goff Carine
Habimana Olivier
Kulakauskas Saulius
Briandet Romain
Positive role of cell wall anchored proteinase PrtP in adhesion of lactococci
BMC Microbiology
title Positive role of cell wall anchored proteinase PrtP in adhesion of lactococci
title_full Positive role of cell wall anchored proteinase PrtP in adhesion of lactococci
title_fullStr Positive role of cell wall anchored proteinase PrtP in adhesion of lactococci
title_full_unstemmed Positive role of cell wall anchored proteinase PrtP in adhesion of lactococci
title_short Positive role of cell wall anchored proteinase PrtP in adhesion of lactococci
title_sort positive role of cell wall anchored proteinase prtp in adhesion of lactococci
url http://www.biomedcentral.com/1471-2180/7/36
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