Copy Number Variation in Patients with Disorders of Sex Development Due to 46,XY Gonadal Dysgenesis
Open Access
- 7 March 2011
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 6 (3) , e17793
- https://doi.org/10.1371/journal.pone.0017793
Abstract
Disorders of sex development (DSD), ranging in severity from mild genital abnormalities to complete sex reversal, represent a major concern for patients and their families. DSD are often due to disruption of the genetic programs that regulate gonad development. Although some genes have been identified in these developmental pathways, the causative mutations have not been identified in more than 50% 46,XY DSD cases. We used the Affymetrix Genome-Wide Human SNP Array 6.0 to analyse copy number variation in 23 individuals with unexplained 46,XY DSD due to gonadal dysgenesis (GD). Here we describe three discrete changes in copy number that are the likely cause of the GD. Firstly, we identified a large duplication on the X chromosome that included DAX1 (NR0B1). Secondly, we identified a rearrangement that appears to affect a novel gonad-specific regulatory region in a known testis gene, SOX9. Surprisingly this patient lacked any signs of campomelic dysplasia, suggesting that the deletion affected expression of SOX9 only in the gonad. Functional analysis of potential SRY binding sites within this deleted region identified five putative enhancers, suggesting that sequences additional to the known SRY-binding TES enhancer influence human testis-specific SOX9 expression. Thirdly, we identified a small deletion immediately downstream of GATA4, supporting a role for GATA4 in gonad development in humans. These CNV analyses give new insights into the pathways involved in human gonad development and dysfunction, and suggest that rearrangements of non-coding sequences disturbing gene regulation may account for significant proportion of DSD cases.Keywords
This publication has 63 references indexed in Scilit:
- Identification of SOX3 as an XX male sex reversal gene in mice and humansJournal of Clinical Investigation, 2011
- Mutations in MAP3K1 Cause 46,XY Disorders of Sex Development and Implicate a Common Signal Transduction Pathway in Human Testis DeterminationAmerican Journal of Human Genetics, 2010
- Mutations in the SRY, DAX1, SF1 and WNT4 genes in Brazilian sex-reversed patientsBrazilian Journal of Medical and Biological Research, 2004
- Dax1 is required for testis determinationNature Genetics, 2003
- Relative quantification of 40 nucleic acid sequences by multiplex ligation-dependent probe amplificationNucleic Acids Research, 2002
- Comparative Genomics of the SOX9 Region in Human and Fugu rubripes: Conservation of Short Regulatory Sequence Elements within Large Intergenic RegionsGenomics, 2001
- Sox9 induces testis development in XX transgenic miceNature Genetics, 2001
- Up-Regulation of WNT-4 Signaling and Dosage-Sensitive Sex Reversal in HumansAmerican Journal of Human Genetics, 2001
- A transgenic insertion upstream of Sox9 is associated with dominant XX sex reversal in the mouseNature Genetics, 2000
- Autosomal XX sex reversal caused by duplication ofSOX9American Journal of Medical Genetics, 1999