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Different types of glomerulonephritis associated with the dysregulation of the complement alternative pathway in 2
1Renal Division, Department of Medicine, Peking University First Hospital Peking University Institute of Nephrology Key Laboratory of Renal Disease, Ministry of Health of China Key Laboratory of Chronic Kidney Disease Prevention and Treatment (Peking University), Ministry of Education Department of Nephrology, The First Affiliated Hospital of Chinese PLA General Hospital, Beijing, China.
Insights
Complement disorders like C3 glomerulonephritis and HUS can present differently even within families. Genetic analysis revealed a C3 gene mutation in one brother, highlighting variable clinical and genetic features in complement alternative pathway dysregulation.
Area of Science:
- Nephrology
- Genetics
- Complement System Biology
Background:
- C3 glomerulonephritis (C3GN) and complement-mediated hemolytic uremic syndrome (HUS) arise from complement system dysregulation.
- Mutations in multiple complement proteins are common in familial C3GN and HUS, impacting etiological identification.
Observation:
- Two brothers presented with distinct complement disorders, differing in clinical and genetic manifestations.
- Patient II-1 exhibited C3GN with thrombotic microangiopathy (TMA) and acute kidney injury.
- Patient II-9 presented with HUS, TMA, and acute tubular injury.
Findings:
- Genome sequencing revealed a heterozygous C3 gene mutation (c.C1774T/p.R592W) in patient II-1.
- This C3 mutation was identified in one other relative (patient III-2), who currently shows no kidney disease symptoms.
- The mutation highlights genetic heterogeneity in complement alternative pathway dysregulation.
Implications:
- Family members with complement alternative pathway dysregulation can exhibit diverse clinical and genetic profiles.
- Genetic testing is vital for identifying the root cause of familial C3GN and HUS.
- This case underscores the complex interplay between genetics and clinical presentation in complement-mediated kidney diseases.
Rationale:
C3 glomerulonephritis (C3GN) and complement-mediated hemolytic uremic syndrome (HUS) both result from the abnormal regulation of the complement system. A significant number of patients with C3GN or complement-mediated HUS have mutations of more than 1 complement protein. This discovery has had a major impact on identifying the underlying cause of familial C3GN or complement-mediated HUS.
Patient Concerns:
We report the cases of 2 brothers (herein referred to as patient II-1 and patient II-9), both with complement disorders that differed in their clinical and genetic features.
Diagnoses:
Patient II-1 clinically presented with nephrotic syndrome and acute kidney injury and pathologically presented with C3GN combined with thrombotic microangiopathy (TMA) and subacute tubulointerstitial nephritis. Meanwhile, patient II-9 clinically presented with HUS and pathologically presented with TMA combined with acute severe tubular injury.
Interventions:
Screenings for genetic mutations contributed to complement system dysregulation were performed on patient II-1.
Outcomes:
The genome sequencing identified that patient II-1 had a heterozygous mutation in the C3 gene (c.C1774T/p.R592W). Nine other relatives of the brothers were checked for this C3 mutation and only the daughter of patient II-1 (herein referred to as patient III-2) carried it, but so far, she does not have any clinical manifestations of kidney disease.
Lessions:
Family members with a dysregulation of the complement alternative pathway may differ in its clinical and genetic features.
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