Acquired and genetic complement abnormalities play a critical role in dense deposit disease and other C3
Aude Servais1, Laure-Hélène Noël, Lubka T Roumenina
1Department of Nephrology, Hôpital Necker-Enfants Malades AP-HP, Paris, France. aude.servais@nck.ap-hop-paris.fr
Insights
Complement alternative pathway dysregulation is key in C3 glomerulopathies like dense deposit disease. Genetic factors and C3 nephritic factor are linked to these kidney diseases.
Area of Science:
- Nephrology
- Immunology
- Genetics
Background:
- Dense deposit disease and glomerulonephritis with isolated C3 deposits are C3-depositing glomerulopathies.
- Previous research suggests a link between complement alternative pathway dysregulation and these kidney diseases.
Purpose of the Study:
- To analyze the role of acquired and genetic complement abnormalities in C3 glomerulopathies.
- To investigate the pathogenesis of dense deposit disease, glomerulonephritis with isolated C3 deposits, and primary membranoproliferative glomerulonephritis type I.
Main Methods:
- Analysis of 134 patients with C3 glomerulopathies (dense deposit disease, isolated C3 glomerulonephritis, MPGN type I).
- Assessment of C3 levels, C3 nephritic factor, CFH/CFI gene mutations, complement factor H Y402H variant, and MCP haplotype.
- Investigation of complement alternative pathway activity.
Main Results:
- C3 nephritic factor was more frequent in dense deposit disease.
- CFH and CFI gene mutations were found in 24 patients, often with C3 nephritic factor.
- Complement alternative pathway dysregulation was evident in MPGN type I; complement factor H Y402H variant increased in dense deposit disease; an MCP haplotype was linked to isolated C3 glomerulonephritis and MPGN type I.
Conclusions:
- Fluid-phase alternative pathway dysregulation plays a critical role in C3 glomerulopathies and immune complex-mediated glomerular diseases.
- Genetic factors and C3 nephritic factor are significant contributors to C3 glomerulopathy pathogenesis.
- Membrane cofactor protein (MCP) expression may influence C3 deposit localization.
Abstract:
Dense deposit disease and glomerulonephritis with isolated C3 deposits are glomerulopathies characterized by deposits of C3 within or along the glomerular basement membrane. Previous studies found a link between dysregulation of the complement alternative pathway and the pathogenesis of these diseases. We analyzed the role of acquired and genetic complement abnormalities in a cohort of 134 patients, of whom 29 have dense deposit disease, 56 have glomerulonephritis with isolated C3 deposits, and 49 have primary membranoproliferative glomerulonephritis type I, with adult and pediatric onset. A total of 53 patients presented with a low C3 level, and 65 were positive for C3 nephritic factor that was significantly more frequently detected in patients with dense deposit disease than in other histological types. Mutations in CFH and CFI genes were identified in 24 patients associated with a C3 nephritic factor in half the cases. We found evidence for complement alternative pathway dysregulation in 26 patients with membranoproliferative glomerulonephritis type I. The complement factor H Y402H variant was significantly increased in dense deposit disease. We identified one at-risk membrane cofactor protein (MCP) haplotype for glomerulonephritis with isolated C3 deposits and membranoproliferative glomerulonephritis type I. Thus, our results suggest a critical role of fluid-phase alternative pathway dysregulation in the pathogenesis of C3 glomerulopathies as well as in immune complex-mediated glomerular diseases. The localization of the C3 deposits may be under the influence of MCP expression.
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