Antibacterial Fusion Proteins Enhance Moraxella catarrhalis Killing

Maisem Laabei1,2, Lucie Colineau1, Serena Bettoni1

  • 1Division of Medical Protein Chemistry, Department of Translational Medicine, Faculty of Medicine, Lund University, Malmö, Sweden.

Frontiers in Immunology
|September 28, 2020
PubMed

Insights

New immunotherapies targeting complement evasion by Moraxella catarrhalis show promise. Fc fusion proteins enhanced bacterial elimination by activating complement and displacing complement inhibitors.

Area of Science:

  • Immunology
  • Microbiology
  • Infectious Diseases

Background:

  • * Moraxella catarrhalis is a significant respiratory pathogen causing otitis media and COPD exacerbations.
  • * Complement evasion is a key virulence mechanism for M. catarrhalis, involving binding of C4BP and FH.
  • * Novel immunotherapies are needed to combat this pathogen and related drug-resistant microbes.

Purpose of the Study:

  • * To develop novel anti-infective immunotherapies targeting M. catarrhalis complement evasion.
  • * To create and evaluate chimeric Fc fusion proteins designed to inhibit C4BP and FH acquisition.

Main Methods:

  • * Construction of two chimeric Fc fusion proteins: C4BP domains 1-2 fused to IgM Fc and FH domains 6-7 fused to IgG Fc.
  • * Assessment of the proteins' ability to displace complement inhibitors from the bacterial surface.
  • * Evaluation of complement activation and bacterial killing mediated by the fusion proteins.

Main Results:

  • * FH6-7/IgG successfully displaced Factor H from M. catarrhalis and enhanced complement activation via Fc-C1q interactions, leading to increased bacterial elimination.
  • * C4BP1-2/IgM enhanced complement deposition and serum killing of M. catarrhalis but did not displace C4b-binding protein.
  • * Both fusion proteins demonstrated potential as anti-infective agents.

Conclusions:

  • * Fc fusion proteins targeting complement evasion represent a promising therapeutic strategy against M. catarrhalis.
  • * These immunotherapies may be applicable to a broader range of pathogens that utilize similar complement evasion mechanisms.
  • * The developed Fc fusion proteins hold potential as adjunctive therapies against drug-resistant bacteria.

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