Clinical and genetic characterization of children with cubilin variants
Neslihan Cicek1, Harika Alpay2, Sercin Guven2
1Department of Pediatric Nephrology, Marmara University School of Medicine, Fevzi Çakmak Mahallesi Muhsin Yazıcıoğlu Caddesi No: 10, Ust Kaynarca/Pendik, Istanbul, Turkey. drneslihancicek@yahoo.com.
Insights
Mutations in the CUBN gene can cause proteinuria even with normal kidney function. Identifying these CUBN gene mutations is crucial for accurate diagnosis and prognosis in patients with isolated proteinuria.
Area of Science:
- Nephrology
- Genetics
- Molecular Biology
Background:
- Cubilin (CUBN) is a receptor protein vital for albumin reabsorption in renal proximal tubules.
- CUBN gene mutations are implicated in kidney diseases, including proteinuria.
Purpose of the Study:
- To investigate the clinical and genetic characteristics of six patients presenting with proteinuria due to CUBN mutations.
- To assess the diagnostic and prognostic implications of CUBN mutations in patients with isolated proteinuria.
Main Methods:
- Evaluation of patient clinical data, including serum creatinine, albumin, vitamin B12 levels, and urine analysis.
- Assessment of urine protein/creatinine, microalbumin/creatinine, and estimated glomerular filtration rates (eGFR).
- Genetic analysis to identify CUBN gene mutations and kidney biopsy in select cases.
Main Results:
- Six patients (4 male, 2 female) with proteinuria and normal kidney function were identified.
- All patients exhibited non-nephrotic range proteinuria; two had low vitamin B12 levels.
- Genetic testing revealed homozygous or compound heterozygous CUBN mutations; one patient had focal segmental glomerulosclerosis (FSGS) on biopsy.
Conclusions:
- CUBN gene mutations should be considered in patients with isolated non-nephrotic proteinuria and preserved kidney function.
- Early diagnosis of CUBN mutations aids in avoiding unnecessary treatments and predicting patient prognosis.
- CUBN mutations can present with varied renal manifestations, including FSGS, expanding the known spectrum of disease.
Background:
Cubilin is one of the receptor proteins responsible for reabsorption of albumin in proximal tubules and is encoded by the CUBN gene. We aimed to evaluate clinical and genetic characterization of six patients with proteinuria who had CUBN mutations.
Methods:
Patients' characteristics, serum creatinine, albumin, vitamin B12 levels, urine analysis, spot urine protein/creatinine, microalbumin/creatinine, beta-2 microglobulin/creatinine ratios, estimated glomerular filtration rates (eGFR), treatments, kidney biopsies, and genetic analyses were evaluated.
Results:
Six patients (2 female, 4 male) with an incidental finding of proteinuria were evaluated. Mean admission age and follow-up time were 7.3 ± 2.9 and 6.5 ± 5.6 years, respectively. Serum albumin, creatinine, and eGFR were normal; urine analysis revealed no hematuria, and C3, C4, ANA, and anti-DNA were negative; kidney ultrasonography was normal for all patients. Urine protein/creatinine was 0.9 ± 0.3 mg/mg, and microalbumin was high in all patients. Serum vitamin B12 was low in two patients and normal in four. Kidney biopsy was performed in four patients, three demonstrated normal light microscopy, and there was one focal segmental glomerulosclerosis (FSGS). Genetic tests revealed four homozygous and two compound heterozygous mutations in the C-terminal part of cubilin. All patients had normal eGFR and still had non-nephrotic range proteinuria at last visit.
Conclusions:
CUBN gene mutations should be considered in patients with isolated non-nephrotic range proteinuria and normal kidney function. Diagnosing these patients, who are thought to have a better prognosis, is important in terms of avoiding unnecessary treatment and predicting prognosis. CUBN gene mutations may also present as FSGS which extends the spectrum of renal manifestation of these patients. A higher resolution version of the Graphical abstract is available as Supplementary information.
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