Complement gene variants determine the risk of immunoglobulin-associated MPGN and C3 glomerulopathy and predict
Paraskevas Iatropoulos1, Marina Noris1, Caterina Mele1
1IRCCS-Istituto di Ricerche Farmacologiche Mario Negri, Clinical Research Center for Rare Diseases Aldo e Cele Daccò, Ranica, Bergamo, Italy.
Background:
Membranoproliferative glomerulonephritis (MPGN) is an uncommon cause of chronic nephropathy recently reclassified into immunoglobulin-associated MPGN (Ig-MPGN) and C3 glomerulopathy (C3G). In this study we aimed: (1) to evaluate the complement genetic and biochemical profile in patients with Ig-MPGN/C3G; (2) to investigate whether genetic variants and different patterns of complement activation (i.e., fluid versus solid phase) correlate with disease manifestations and outcomes.
Methods:
In 140 patients with idiopathic Ig-MPGN or C3G we performed complement biochemical and genetic screening and correlated genetic, biochemical and histology data with clinical features.
Results:
Mutations in genes encoding alternative pathway complement proteins were found in both Ig-MPGN and C3G, and mutations in the two components of the C3 convertase are the most prevalent. We also report a mutation in THBD encoding thrombomodulin in a C3G patient. The presence of mutations alone does not significantly increase the risk of Ig-MPGN or C3G, but it does so when combined with common susceptibility variants (CD46 c.-366A in Ig-MPGN; CFH V62 and THBD A473 in C3G). Finally, patients without complement gene mutations or C3NeFs--autoantibodies that stabilize the alternative pathway C3 convertase--have a higher risk of progressing to end-stage renal disease than patients with identified mutations and/or C3NeFs, suggesting the existence of different pathogenetic mechanisms that lead to renal disease.
Conclusions:
We provide new insights into the pathogenesis of Ig-MPGN/C3G that underscore the complex nature of these diseases and suggest that the current C3G classification may miss many cases associated with abnormalities of the complement alternative pathway.
Insights
Complement gene mutations are linked to kidney disease progression in immunoglobulin-associated MPGN (Ig-MPGN) and C3 glomerulopathy (C3G). Identifying these mutations and autoantibodies aids in understanding disease mechanisms and patient outcomes.
Area of Science:
- Nephrology
- Immunology
- Genetics
Background:
- Membranoproliferative glomerulonephritis (MPGN) is a rare cause of chronic kidney disease.
- MPGN is now classified into immunoglobulin-associated MPGN (Ig-MPGN) and C3 glomerulopathy (C3G).
Purpose of the Study:
- To assess the genetic and biochemical profiles of complement system in Ig-MPGN and C3G patients.
- To correlate complement genetic variants and activation patterns with disease manifestations and outcomes.
Main Methods:
- 140 patients with idiopathic Ig-MPGN or C3G underwent complement screening.
- Genetic, biochemical, and histological data were correlated with clinical features.
Main Results:
- Mutations in alternative complement pathway genes, particularly C3 convertase components, were prevalent in both Ig-MPGN and C3G.
- Combined genetic variants and susceptibility factors (e.g., CD46, CFH, THBD) increased disease risk.
- Absence of complement gene mutations or C3NeFs correlated with a higher risk of end-stage renal disease.
Conclusions:
- Findings offer new insights into the complex pathogenesis of Ig-MPGN and C3G.
- Current C3G classification may overlook cases with complement alternative pathway abnormalities.
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