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Updated: Jun 2, 2026

A Reverse Genetic Approach to Test Functional Redundancy During Embryogenesis
Published on: August 11, 2010
RET and GDNF mutations are rare in fetuses with renal agenesis or other severe kidney development defects
Cécile Jeanpierre1, Guillaume Macé, Mélanie Parisot
1Inserm U983, Hôpital Necker, 75015 Paris, France. cecile.jeanpierre@inserm.fr
Background:
The RET/GDNF signalling pathway plays a crucial role during development of the kidneys and the enteric nervous system. In humans, RET activating mutations cause multiple endocrine neoplasia, whereas inactivating mutations are responsible for Hirschsprung disease. RET mutations have also been reported in fetuses with renal agenesis, based on analysis of a small series of samples.
Objective And Methods:
To characterise better the involvement of RET and GDNF in kidney development defects, a series of 105 fetuses with bilateral defects, including renal agenesis, severe hypodysplasia or multicystic dysplastic kidney, was studied. RET and GDNF coding sequences, evolutionary conserved non-coding regions (ECRs) in promoters, 3'UTRs, and RET intron 1 were analysed. Copy number variations at these loci were also investigated.
Results:
The study identified: (1) a low frequency (<7%) of potential mutations in the RET coding sequence, with inheritance from the healthy father for four of them; (2) no GDNF mutation; (3) similar allele frequencies in patients and controls for most single nucleotide polymorphism variants, except for RET intron 1 variant rs2506012 that was significantly more frequent in affected fetuses than in controls (6% vs 2%, p=0.01); (4) distribution of the few rare RET variants unidentified in controls into the various 5'-ECRs; (5) absence of copy number variations.
Conclusion:
These results suggest that genomic alteration of RET or GDNF is not a major mechanism leading to renal agenesis and other severe kidney development defects. Analysis of a larger series of patients will be necessary to validate the association of the RET intron 1 variant rs2506012 with renal development defects.
Insights
Genomic alterations in RET or GDNF are unlikely major causes of severe kidney development defects. Further studies are needed to confirm the association of a specific RET intron 1 variant with these conditions.
Area of Science:
- Developmental Biology
- Genetics
- Nephrology
Background:
- The RET/GDNF signaling pathway is critical for kidney and enteric nervous system development.
- RET mutations are linked to human diseases like multiple endocrine neoplasia and Hirschsprung disease.
- Previous studies suggested a role for RET mutations in fetal renal agenesis.
Purpose of the Study:
- To investigate the involvement of RET and GDNF in severe kidney development defects.
- To analyze genetic variations in RET and GDNF in a cohort of fetuses with bilateral kidney anomalies.
- To explore the potential role of non-coding regions and copy number variations in these defects.
Main Methods:
- Sequencing of RET and GDNF coding sequences and regulatory regions (promoters, 3'UTRs, intron 1).
- Analysis of evolutionary conserved non-coding regions (ECRs) and single nucleotide polymorphism (SNP) variants.
- Investigation of copy number variations (CNVs) at these loci.
Main Results:
- Low frequency (<7%) of potential RET coding mutations, with some inherited from healthy fathers.
- No mutations identified in the GDNF gene.
- A RET intron 1 variant (rs2506012) was significantly more frequent in affected fetuses (6%) than controls (2%).
- Rare RET variants were found in 5'-ECRs; no copy number variations were detected.
Conclusions:
- Genomic alterations in RET or GDNF are not a primary mechanism for renal agenesis and severe kidney malformations.
- The RET intron 1 variant rs2506012 warrants further investigation for its potential association with renal development defects.
- Larger patient cohorts are required to validate the findings.
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