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Isolation and Characterization Of Chimeric Human Fc-expressing Proteins Using Protein A Membrane Adsorbers And A Streamlined Workflow
Published on: January 8, 2014
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.
Abstract:
Bacteria can cause life-threatening infections, such as pneumonia, meningitis, or sepsis. Antibiotic therapy is a mainstay of treatment, although antimicrobial resistance has drastically increased over the years. Unfortunately, safe and effective vaccines against most pathogens have not yet been approved, and thus developing alternative treatments is important. We analyzed the efficiency of factor H (FH)6-7/Fc, a novel antibacterial immunotherapeutic protein against the Gram-positive bacterium Streptococcus pyogenes This protein is composed of two domains of complement inhibitor human FH (FH complement control protein modules 6 and 7) that bind to S. pyogenes, linked to the Fc region of IgG (FH6-7/Fc). FH6-7/Fc has previously been shown to enhance complement-dependent killing of, and facilitate bacterial clearance in, animal models of the Gram-negative pathogens Haemophilus influenzae and Neisseria meningitidis We hypothesized that activation of complement by FH6-7/Fc on the surface of Gram-positive bacteria such as S. pyogenes will enable professional phagocytes to eliminate the pathogen. We found that FH6-7/Fc alleviated S. pyogenes-induced sepsis in a transgenic mouse model expressing human FH (S. pyogenes binds FH in a human-specific manner). Furthermore, FH6-7/Fc, which binds to protein H and selected M proteins, displaced FH from the bacterial surface, enhanced alternative pathway activation, and reduced bacterial blood burden by opsonophagocytosis in a C3-dependent manner in an ex vivo human whole-blood model. In conclusion, FH-Fc chimeric proteins could serve as adjunctive treatments against multidrug-resistant bacterial infections.
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.

