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FEMS Immunol Med Microbiol ; 56(1): 48-55, 2009 Jun.
Article in English | MEDLINE | ID: mdl-19260960

ABSTRACT

Bacteroides fragilis is a minor component of the intestinal microbiota and the most frequently isolated from intra-abdominal infections and bacteremia. Previously, our group has shown that molecules involved in laminin-1 (LMN-1) recognition were present in outer membrane protein extracts of B. fragilis MC2 strain. One of these proteins was identified and showed 98% similarity to a putative B. fragilis plasminogen-binding protein precursor, deposited in the public database. Thus, the objective of this work was to overexpress and further characterize this novel adhesin. The ability of B. fragilis MC2 strain and purified protein to convert plasminogen into plasmin was tested. Our results showed that B. fragilis strain MC2 strain adhered to both LMN-1 and plasminogen and this adhesion was inhibited by either LMN-1 or plasminogen. Regarding the plasminogen activation activity, both the whole bacterial cell and the purified protein converted plasminogen into plasmin similar to streptokinase used as a positive control. Bacterial receptors that recognize plasminogen bind to it and enhance its activation, transforming a nonproteolytic bacterium into a proteolytic one. We present in vitro evidence for a pathogenic function of the plasminogen receptor in promoting adherence to laminin and also the formation of plasmin by B. fragilis.


Subject(s)
Bacterial Outer Membrane Proteins/metabolism , Bacteroides Infections/microbiology , Bacteroides fragilis/metabolism , Bacteroides fragilis/pathogenicity , Plasminogen Activators/metabolism , Bacterial Adhesion , Bacterial Outer Membrane Proteins/chemistry , Bacterial Outer Membrane Proteins/genetics , Bacteroides Infections/metabolism , Bacteroides fragilis/genetics , Chromatography, Affinity , Cloning, Molecular , DNA, Bacterial/analysis , Fibrinolysin/metabolism , Humans , Laminin/metabolism , Mass Spectrometry , Plasminogen/metabolism , Plasminogen Activators/chemistry , Plasminogen Activators/genetics , Sequence Analysis, DNA , Virulence
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