Factor H-IgG Chimeric Proteins as a Therapeutic Approach against the Gram-Positive Bacterial Pathogen Streptococcus

Anna M Blom1, Michal Magda1, Lisa Kohl1

  • 1Department of Translational Medicine, Medical Protein Chemistry, Lund University, Skåne County Council, Malmö 20502, Sweden.

Insights

A novel immunotherapeutic protein, factor H (FH)6-7/Fc, effectively combats Streptococcus pyogenes infections by enhancing complement-mediated bacterial clearance. This offers a promising alternative treatment for antibiotic-resistant bacterial infections.

Area of Science:

  • Immunology
  • Microbiology
  • Protein Engineering

Background:

  • Bacterial infections like pneumonia, meningitis, and sepsis pose significant health risks.
  • Antimicrobial resistance is increasing, necessitating alternative treatment strategies.
  • Effective vaccines are lacking for many bacterial pathogens.

Purpose of the Study:

  • To evaluate the efficacy of a novel immunotherapeutic protein, factor H (FH)6-7/Fc, against the Gram-positive bacterium Streptococcus pyogenes.
  • To investigate FH6-7/Fc's mechanism of action in bacterial clearance.

Main Methods:

  • Analysis of FH6-7/Fc activity in a transgenic mouse model of Streptococcus pyogenes sepsis.
  • Assessment of FH6-7/Fc's effect on complement activation and bacterial opsonophagocytosis in an ex vivo human whole-blood model.
  • Investigation of FH6-7/Fc binding to bacterial surface proteins (Protein H and M proteins).

Main Results:

  • FH6-7/Fc significantly alleviated Streptococcus pyogenes-induced sepsis in a human FH-expressing mouse model.
  • The protein displaced factor H from the bacterial surface, enhanced alternative complement pathway activation, and reduced bacterial load.
  • Opsonophagocytosis mediated by FH6-7/Fc was C3-dependent in a human whole-blood model.

Conclusions:

  • FH6-7/Fc demonstrates potent antibacterial activity against Streptococcus pyogenes.
  • Factor H-Fc chimeric proteins represent a promising adjunctive therapeutic strategy for multidrug-resistant bacterial infections.
  • This approach leverages the complement system for pathogen clearance.