Factor H-Related Protein 1 Drives Disease Susceptibility and Prognosis in C3 Glomerulopathy

Bárbara Márquez-Tirado1, Josué Gutiérrez-Tenorio1, Agustín Tortajada1

  • 1Department of Immunology, Complutense University and Research Institute Hospital 12 de Octubre (imas12), Madrid, Spain.

Insights

Mutant factor H-related protein 1 (FHR-1) with duplicated domains drives C3 glomerulopathy by overactivating the complement alternative pathway. Genetic deficiency or low FHR-1 levels protect against C3G and improve kidney outcomes.

Area of Science:

  • Nephrology
  • Immunology
  • Complement System Biology

Background:

  • C3 glomerulopathy (C3G) is a kidney disease marked by C3 deposition and complement dysregulation.
  • Mutations in factor H-related (FHR) proteins, specifically duplicated dimerization domains, are linked to C3G but the mechanism is unknown.

Purpose of the Study:

  • Investigate the pathogenic mechanism of FHR-1 mutants with duplicated dimerization domains in C3G.
  • Analyze the role of CFHR1 copy number variations and FHR-1 plasma levels in C3G susceptibility and prognosis.

Main Methods:

  • Extensive in vitro and in vivo characterization of a duplicated dimerization domain FHR-1 mutant.
  • Analysis of CFHR1 copy number variations and plasma FHR-1 levels in Spanish C3G cohorts and controls.

Main Results:

  • The FHR-1 mutant showed increased interaction with C3-opsonized surfaces, leading to excessive alternative pathway activation.
  • Mutant FHR-1 binds C3 fragments, recruits C3/C3b, forms convertases, and overcomes Factor H regulation.
  • Genetic deficiency or low plasma FHR-1 protected against C3G and correlated with better renal outcomes.

Conclusions:

  • Duplicated dimerization domains in FHR-1 predispose to C3G by dysregulating complement.
  • This mechanism may apply to other diseases like IgA nephropathy and age-related macular degeneration.
  • FHR-1 is identified as a potential therapeutic target for C3G.
Abstract

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