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Biomimetic Materials to Characterize Bacteria-host Interactions
Published on: November 16, 2015
The Bfp60 surface adhesin is an extracellular matrix and plasminogen protein interacting in Bacteroides fragilis
Eliane de Oliveira Ferreira1, Felipe Lopes Teixeira, Fabiana Cordeiro
1Laboratório de Biologia de Anaeróbios, Departamento de Microbiologia Médica, UFRJ, Ilha do Fundão, CCS, Instituto de Microbiologia Prof. Paulo de Góes, Rio de Janeiro, Brazil; Universidade Federal do Rio de Janeiro - Polo Xerém, Estrada de Xerém, 27, Duque de Caxias, Rio de Janeiro, CEP: 25245-390, Brazil.
Abstract:
Plasminogen (Plg) is a highly abundant protein found in the plasma component of blood and is necessary for the degradation of fibrin, collagen, and other structural components of tissues. This fibrinolytic system is utilized by several pathogenic species of bacteria to manipulate the host plasminogen system and facilitate invasion of tissues during infection by modifying the activation of this process through the binding of Plg at their surface. Bacteroides fragilis is the most commonly isolated Gram-negative obligate anaerobe from human clinical infections, such as intra-abdominal abscesses and anaerobic bacteraemia. The ability of B. fragilis to convert plasminogen (Plg) into plasmin has been associated with an outer membrane protein named Bfp60. In this study, we characterized the function of Bfp60 protein in B. fragilis 638R by constructing the bfp60 defective strain and comparing its with that of the wild type regarding binding to laminin-1 (LMN-1) and activation of Plg into plasmin. Although the results showed in this study indicate that Bfp60 surface protein of B. fragilis is important for the recognition of LMN-1 and Plg activation, a significant slow activation of Plg into plasmin was observed in the mutant strain. For that reason, the possibility of another unidentified mechanism activating Plg is also present in B. fragilis cannot be discarded. The results demonstrate that Bfp60 protein is responsible for the recognition of laminin and Plg-plasmin activation. Although the importance of this protein is still unclear in the pathogenicity of the species, it is accepted that since other pathogenic bacteria use this mechanism to disseminate through the extracellular matrix during the infection, it should also contribute to the virulence of B. fragilis.
Insights
Bacteroides fragilis uses the Bfp60 protein to bind laminin and activate plasminogen (Plg) into plasmin, aiding in tissue invasion. A defective strain showed slower Plg activation, suggesting Bfp60
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Plasminogen (Plg) activation by bacteria facilitates tissue invasion.
- Bacteroides fragilis, a common pathogen, is known to activate Plg.
- The outer membrane protein Bfp60 is implicated in Plg activation by B. fragilis.
Purpose of the Study:
- To characterize the role of Bfp60 in B. fragilis 638R.
- To investigate Bfp60's function in laminin-1 (LMN-1) binding and Plg activation.
- To compare Plg activation and LMN-1 binding between wild-type and bfp60-defective B. fragilis strains.
Main Methods:
- Construction of a bfp60-defective B. fragilis strain.
- Comparative analysis of LMN-1 binding.
- Assessment of Plg activation to plasmin in wild-type and mutant strains.
Main Results:
- Bfp60 is crucial for B. fragilis recognition of LMN-1.
- Bfp60 mediates the activation of Plg to plasmin.
- A bfp60-defective strain exhibited significantly slower Plg activation, indicating potential alternative mechanisms.
Conclusions:
- Bfp60 protein is essential for laminin binding and Plg-plasmin activation in B. fragilis.
- While Bfp60 contributes to virulence, other mechanisms for Plg activation may exist in B. fragilis.
- The findings highlight Bfp60's role in bacterial pathogenesis and extracellular matrix interaction.
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