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Different Aspects of Classical Pathway Overactivation in Patients With C3 Glomerulopathy and Immune Complex-Mediated
Marloes A H M Michels1, Nicole C A J van de Kar1, Sanne A W van Kraaij2
1Department of Pediatric Nephrology, Radboud Institute for Molecular Life Sciences, Amalia Children's Hospital, Radboud University Medical Center, Nijmegen, Netherlands.
Insights
This study reveals that autoantibodies called C4 nephritic factors (C4NeFs) can stabilize the classical complement pathway in kidney diseases like C3 glomerulopathy (C3G) and immune complex-mediated membranoproliferative glomerulonephritis (IC-MPGN). This overactivity contributes to complement system dysregulation in these rare disorders.
Area of Science:
- Nephrology
- Immunology
- Complement System Biology
Background:
- C3 glomerulopathy (C3G) is a rare kidney disease linked to alternative pathway (AP) complement dysregulation, often involving C3 nephritic factors (C3NeF).
- The role of classical pathway (CP) convertase stabilization in C3G and immune complex-mediated membranoproliferative glomerulonephritis (IC-MPGN) is not well understood.
Purpose of the Study:
- To investigate classical pathway (CP) convertase activity in patients with C3G and IC-MPGN.
- To identify factors responsible for CP convertase stabilization in these kidney diseases.
Main Methods:
- A refined two-step hemolytic assay was used to measure CP convertase stability directly in patient serum.
- Serum from 52 patients with C3G/IC-MPGN and 17 healthy controls was analyzed.
- Experiments with C3-depleted serum were conducted to elucidate the mechanism of C4NeF activity.
Main Results:
- Four patients exhibited prolonged CP convertase activity, indicating stabilization.
- Immunoglobulin-mediated stabilization (C4 nephritic factors, C4NeFs) was identified in three patients (2 C3G, 1 IC-MPGN).
- Non-immunoglobulin-mediated stabilization was detected in one C3G patient; C4NeFs were shown to stabilize the CP C3 convertase (C4bC2a) independently of C3NeF epitopes. All patients showed signs of complement activation.
Conclusions:
- This study demonstrates that both immunoglobulin (C4NeFs) and non-immunoglobulin factors can stabilize the classical complement pathway's C3 convertase in C3G and IC-MPGN.
- These findings reveal novel mechanisms of complement dysregulation in these kidney diseases.
- The results highlight the diverse nature of factors contributing to complement overactivity in C3G and IC-MPGN.
Abstract:
The rare and heterogeneous kidney disorder C3 glomerulopathy (C3G) is characterized by dysregulation of the alternative pathway (AP) of the complement system. C3G is often associated with autoantibodies stabilizing the AP C3 convertase named C3 nephritic factors (C3NeF). The role of classical pathway (CP) convertase stabilization in C3G and related diseases such as immune complex-mediated membranoproliferative glomerulonephritis (IC-MPGN) remains largely unknown. Here, we investigated the CP convertase activity in patients with C3G and IC-MPGN. Using a refined two-step hemolytic assay, we measured the stability of CP convertases directly in the serum of 52 patients and 17 healthy controls. In four patients, CP convertase activity was prolonged compared to healthy controls, i.e. the enzymatic complex was stabilized. In three patients (2 C3G, 1 IC-MPGN) the convertase stabilization was caused by immunoglobulins, indicating the presence of autoantibodies named C4 nephritic factors (C4NeFs). Importantly, the assay also enabled detection of non-immunoglobulin-mediated stabilization of the CP convertase in one patient with C3G. Prolonged CP convertase activity coincided with C3NeF activity in all patients and for up to 70 months of observation. Crucially, experiments with C3-depleted serum showed that C4NeFs stabilized the CP C3 convertase (C4bC2a), that does not contain C3NeF epitopes. All patients with prolonged CP convertase activity showed clear signs of complement activation, i.e. lowered C3 and C5 levels and elevated levels of C3d, C3bc, C3bBbP, and C5b-9. In conclusion, this work provides new insights into the diverse aspects and (non-)immunoglobulin nature of factors causing CP convertase overactivity in C3G/IC-MPGN.
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