Related Experiment Video
Updated: Jun 13, 2026

Implementing Patch Clamp and Live Fluorescence Microscopy to Monitor Functional Properties of Freshly Isolated PKD Epithelium
Published on: September 1, 2015
Identification of GDNF gene sequence variations in patients with medullary sponge kidney disease
Rossella Torregrossa1, Franca Anglani, Antonia Fabris
1Laboratory of Histomorphology and Molecular Biology of the Kidney, Division of Nephrology, Department of Medical and Surgical Sciences, University Hospital of Padua, Via Giustiniani, 2. 35128 Padua, Italy. r.torregrossa@libero.it
Background And Objectives:
Medullary sponge kidney (MSK) is a rare nephropathy characterized by cystic anomalies of precalyceal ducts, nephrocalcinosis, renal stones, and tubule dysfunctions. Its association with various malformations and cases of familial aggregation supports the conviction that genetic factors are involved, but no genetic studies have been conducted to date. It is hypothesized that MSK is due to a disruption at the "ureteric bud/metanephric blastema" interface caused by critical developmental genes functioning abnormally.
Design, Setting, Participants, & Measurements:
Fifty-five apparently sporadic MSK patients were analyzed by direct DNA sequencing of all exons and exon-intron boundaries of glial cell-derived neurotrophic factor (GDNF) gene and rearranged during transfection (RET) gene, which have a leading role in renal development.
Results:
Two novel variants were found in heterozygosity in the MSK case population: GDNF{ENST00000344622}:c.-45G>C and c.-27+18G>A in a putative binding domain for paired-box 2 transcription factor. As a whole, eight patients showed these variations: four patients carried the c.[-45G>C; -27+18G>A] complex allele, and the others had the c.-27+18G>A alone. A case-control study revealed that these two alleles were significantly associated with MSK. Five of the eight cases were found to be familial, and the allele variants cosegregated with the disease in a seemingly dominant pattern of inheritance. Patients revealed no mutations in the RET gene.
Conclusions:
This is the first report identifying GDNF gene sequence variations in patients with MSK and suggesting a role for this gene in the pathogenesis of some cases of the disease.
Insights
Genetic variations in the glial cell-derived neurotrophic factor (GDNF) gene are linked to medullary sponge kidney (MSK), a rare kidney disease. This study identifies novel GDNF variants associated with MSK pathogenesis.
Area of Science:
- Nephrology
- Genetics
- Developmental Biology
Background:
- Medullary sponge kidney (MSK) is a rare congenital kidney disease.
- MSK is characterized by ductal anomalies, nephrocalcinosis, and kidney stones.
- Genetic factors are suspected in MSK, but no genetic studies have been performed.
Purpose of the Study:
- Investigate the genetic basis of medullary sponge kidney (MSK).
- Analyze the glial cell-derived neurotrophic factor (GDNF) and RET genes for mutations in MSK patients.
- Determine the role of GDNF gene variations in MSK pathogenesis.
Main Methods:
- DNA sequencing of GDNF and RET genes in 55 MSK patients.
- Analysis of exon-intron boundaries and coding regions.
- Case-control study to assess allele association with MSK.
Main Results:
- Two novel heterozygous GDNF variants (c.-45G>C and c.-27+18G>A) were identified in MSK patients.
- These GDNF variants were significantly associated with MSK in a case-control study.
- No mutations were found in the RET gene; familial cases showed dominant inheritance patterns.
Conclusions:
- This study is the first to report GDNF gene sequence variations in MSK patients.
- GDNF gene variations may play a role in the pathogenesis of some MSK cases.
- Further research is needed to elucidate the precise mechanisms.
Related Concept Videos
Comparing Copy Number Variations and SNPs
Copy number variations or CNVs are the structural variations that cover more than 1kb of DNA sequence. The single nucleotide polymorphism (SNP), on the other hand, is a single nucleotide change or a point mutation that is found in more than 1%...
Single Nucleotide Polymorphisms-SNPs

