Loss of Function of the Nuclear Receptor NR2F2, Encoding COUP-TF2, Causes Testis Development and Cardiac Defects in

Anu Bashamboo1, Caroline Eozenou1, Anne Jorgensen2

  • 1Human Developmental Genetics, Institut Pasteur, Paris 75724, France.

Insights

Mutations in the NR2F2 gene, encoding COUP-TF2, are linked to a rare syndromic form of disorder of sex development (DSD) in humans. This finding identifies COUP-TF2 as a key factor in human ovary development, contrasting with its role in mice.

Area of Science:

  • Genetics
  • Developmental Biology
  • Endocrinology

Background:

  • Mammalian sex determination involves complex gene regulatory networks, but ovarian development pathways remain less understood than testicular ones.
  • Previous research focused on male sex determination, leaving the genetic basis of female gonad development largely unexplored.

Purpose of the Study:

  • To investigate the genetic underpinnings of unexplained virilization and testicular/ovotesticular disorders of sex development (TDSD/OTDSD) in 46,XX individuals.
  • To identify novel genes involved in human ovarian development and sex determination.

Main Methods:

  • Exome and Sanger sequencing of 79 individuals with 46,XX SRY-negative disorders of sex development.
  • Genetic analysis to identify mutations in candidate genes.
  • Expression analysis of COUP-TF2 in fetal human ovarian tissue.

Main Results:

  • Heterozygous loss-of-function mutations in NR2F2 (encoding COUP-TF2) were identified in three children with syndromic DSD.
  • These mutations were associated with virilization, testicular tissue, congenital heart disease, and other congenital anomalies.
  • COUP-TF2 was found to be abundant in fetal human ovarian stromal cells, distinct from FOXL2-expressing cells.

Conclusions:

  • NR2F2 mutations represent a significant cause of syndromic DSD in humans.
  • COUP-TF2 acts as a pro-ovary and anti-testis factor in human gonad development, a role divergent from its function in mice.
  • Nuclear receptors play a critical role in establishing human ovarian identity.

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