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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.
Abstract:
Emerging evidence from murine studies suggests that mammalian sex determination is the outcome of an imbalance between mutually antagonistic male and female regulatory networks that canalize development down one pathway while actively repressing the other. However, in contrast to testis formation, the gene regulatory pathways governing mammalian ovary development have remained elusive. We performed exome or Sanger sequencing on 79 46,XX SRY-negative individuals with either unexplained virilization or with testicular/ovotesticular disorders/differences of sex development (TDSD/OTDSD). We identified heterozygous frameshift mutations in NR2F2, encoding COUP-TF2, in three children. One carried a c.103_109delGGCGCCC (p.Gly35Argfs∗75) mutation, while two others carried a c.97_103delCCGCCCG (p.Pro33Alafs∗77) mutation. In two of three children the mutation was de novo. All three children presented with congenital heart disease (CHD), one child with congenital diaphragmatic hernia (CDH), and two children with blepharophimosis-ptosis-epicanthus inversus syndrome (BPES). The three children had androgen production, virilization of external genitalia, and biochemical or histological evidence of testicular tissue. We demonstrate a highly significant association between the NR2F2 loss-of-function mutations and this syndromic form of DSD (p = 2.44 × 10-8). We show that COUP-TF2 is highly abundant in a FOXL2-negative stromal cell population of the fetal human ovary. In contrast to the mouse, these data establish COUP-TF2 as a human "pro-ovary" and "anti-testis" sex-determining factor in female gonads. Furthermore, the data presented here provide additional evidence of the emerging importance of nuclear receptors in establishing human ovarian identity and indicate that nuclear receptors may have divergent functions in mouse and human biology.
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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