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

Abstract

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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