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A novel CFHR5 mutation associated with C3 glomerulonephritis in a Turkish girl
Nesrin Besbas1, Bora Gulhan, Safak Gucer
1Department of Pediatric Nephrology, Hacettepe University Faculty of Medicine, Ankara, Turkey.
Insights
A novel CFHR5 gene variation caused C3 glomerulopathy in a teen girl with nephrotic syndrome. Eculizumab treatment was ineffective, expanding the disease
Area of Science:
- Nephrology
- Genetics
- Complement System Biology
Background:
- C3 glomerulopathy is a rare kidney disease characterized by complement 3 deposits.
- It includes dense deposit disease, C3 glomerulonephritis, and CFHR5 nephropathy.
- Genetic mutations in complement regulatory proteins are implicated.
Observation:
- A 16-year-old girl presented with periorbital edema and nephrotic syndrome with low C3 levels.
- Renal biopsy revealed membranoproliferative glomerulonephritis with C3-only deposits.
- Genetic analysis identified a novel heterozygous CFHR5 gene variation (p.Cys269Arg).
Findings:
- The patient had a novel heterozygous variation in the CFHR5 gene, not in CFH or CFI genes.
- Eculizumab therapy, targeting the complement cascade, was unsuccessful after 10 months.
- This case expands the known genetic and phenotypic spectrum of CFHR5-related nephropathy.
Implications:
- Identifies a new genetic cause of C3 glomerulopathy.
- Suggests Eculizumab may not be effective for all CFHR5-related nephropathy subtypes.
- Highlights the importance of genetic screening in atypical C3 glomerulopathy presentations.
Abstract:
C3 glomerulopathy defines a subgroup of membranoproliferative glomerulonephritis (MPGN) characterized by complement 3 (C3)-positive, immunoglobulin-negative deposits in immunofluorescence microscopy. It comprises 3 clinical conditions: dense deposit disease, C3 glomerulonephritis, and complement factor H-related 5 (CFHR5) nephropathy. Mutations in genes encoding regulatory proteins of the alternative complement pathway have been described. A 16-year-old girl was admitted to the hospital due to periorbital edema. Nephrotic syndrome accompanied by low C3 level was diagnosed. Renal biopsy showed MPGN in light microscopy, only C3 deposits in immunofluorescence microscopy, and subendothelial electron dense deposits and capillary basement membrane thickening with double contour formation in electron microscopy. C3 nephritic factor and anti complement factor H antibody were negative. Complement factor H level was normal. Genetic screening showed a novel heterozygous p.Cys269Arg variation in the CFHR5 gene without any mutation in CFH and CFI genes. Eculizumab therapy was started but was unsuccessful at 10 months of follow-up. We have identified a novel heterozygous variation in CFHR5-related nephropathy presenting with nephrotic syndrome and persistently low C3 level, thus expanding the genetic and phenotypic spectrum of the disease. Eculizumab seems to be ineffective in this subtype.
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