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.

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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