Deletion of long-range regulatory elements upstream of SOX9 causes campomelic dysplasia
- 1 September 1998
- journal article
- case report
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 95 (18) , 10649-10654
- https://doi.org/10.1073/pnas.95.18.10649
Abstract
Campomelic dysplasia (CD) is a rare, neonatal human chondrodysplasia characterized by bowing of the long bones and often associated with male-to-female sex-reversal. Patients present with either heterozygous mutations in the SOX9 gene or chromosome rearrangements mapping at least 50 kb upstream of SOX9. Whereas mutations in SOX9 ORF cause haploinsufficiency, the effects of translocations 5' to SOX9 are unclear. To test whether these rearrangements also cause haploinsufficiency by altering spatial and temporal expression of SOX9, we generated mice transgenic for human SOX9-lacZ yeast artificial chromosomes containing variable amounts of DNA sequences upstream of SOX9. We show that elements necessary for SOX9 expression during skeletal development are highly conserved between mouse and human and reveal that a rearrangement upstream of SOX9, similar to those observed in CD patients, leads to a substantial reduction of SOX9 expression, particularly in chondrogenic tissues. These data demonstrate that important regulatory elements are scattered over a large region upstream of SOX9 and explain how particular aspects of the CD phenotype are caused by chromosomal rearrangements 5' to SOX9.Keywords
This publication has 32 references indexed in Scilit:
- Camptomelic dwarfism. A genetically determined mesenchymal disorder combined with sex reversalHereditas, 2009
- SOX9 directly regulates the type-ll collagen geneNature Genetics, 1997
- Sox9 expression during gonadal development implies a conserved role for the gene in testis differentiation in mammals and birdsNature Genetics, 1996
- Sex reversal by loss of the C–terminal transactivation domain of human SOX9Nature Genetics, 1996
- Aniridia-associated cytogenetic rearrangements suggest that a position effect may cause the mutant phenotypeHuman Molecular Genetics, 1995
- The Sry-related gene Sox9 is expressed during chondrogenesis in mouse embryosNature Genetics, 1995
- Campomelic dysplasia and autosomal sex reversal caused by mutations in an SRY-related geneNature, 1994
- Male development of chromosomally female mice transgenic for SryNature, 1991
- A gene mapping to the sex-determining region of the mouse Y chromosome is a member of a novel family of embryonically expressed genesNature, 1990
- The campomelic syndrome: Review, report of 17 cases, and follow‐up on the currently 17‐year‐old boy first reported by Maroteaux et al in 1971American Journal of Medical Genetics, 1983