The β-subunit of follicle-stimulating hormone is deleted in patients with aniridia and Wilms' tumour, allowing a further definition of the WAGR locus
- 1 June 1986
- journal article
- Published by Springer Nature in Nature
- Vol. 321 (6073) , 882-887
- https://doi.org/10.1038/321882a0
Abstract
One in 10,000 children develops Wilms' tumour, an embryonal malignancy of the kidney. Although most Wilms' tumours are sporadic, a genetic predisposition is associated with aniridia, genito-urinary malformations and mental retardation (the WAGR syndrome). Patients with this syndrome typically exhibit constitutional deletions involving band p13 of one chromosome 11 homologue. It is likely that these deletions overlap a cluster of separate but closely linked genes that control the development of the kidney, iris and urogenital tract (the WAGR complex). A discrete aniridia locus, in particular, has been defined within this chromosomal segment by a reciprocal translocation, transmitted through three generations, which interrupts 11p13. In addition, the specific loss of chromosome 11p alleles in sporadic Wilms' tumours has been demonstrated, suggesting that the WAGR complex includes a recessive oncogene, analogous to the retinoblastoma locus on chromosome 13. In WAGR patients, the inherited 11p deletion is thought to represent the first of two events required for the initiation of a Wilms' tumour, as suggested by Knudson from epidemiological data. We have now isolated the deleted chromosomes 11 from four WAGR patients in hamster-human somatic cell hybrids, and have tested genomic DNA from the hybrids with chromosome 11-specific probes. We show that 4 of 31 markers are deleted in at least one patient, but that of these markers, only the gene encoding the beta-subunit of follicle-stimulating hormone (FSHB) is deleted in all four patients. Our results demonstrate close physical linkage between FSHB and the WAGR locus, suggest a gene order for the four deleted markers and exclude other markers tested from this region. In hybrids prepared from a balanced translocation carrier with familial aniridia, the four markers segregate into proximal and distal groups. The translocation breakpoint, which identifies the position of the aniridia gene on 11p, is immediately proximal to FSHB, in the interval between FSHB and the catalase gene.Keywords
This publication has 47 references indexed in Scilit:
- Detection of specific sequences among DNA fragments separated by gel electrophoresisPublished by Elsevier ,2006
- Apolipoprotein A-I Gene Polymorphism Associated with Premature Coronary Artery Disease and Familial HypoalphalipoproteinemiaNew England Journal of Medicine, 1986
- Deletion in Chromosome 11p Associated with a Hepatitis B Integration Site in Hepatocellular CarcinomaScience, 1985
- Del 11p/aniridia complex. Report of three patients and review of 37 observations from the literatureClinical Genetics, 1984
- Separation of yeast chromosome-sized DNAs by pulsed field gradient gel electrophoresisCell, 1984
- The human calcitonin gene is located on the short ARM of chromosome 11Biochemical and Biophysical Research Communications, 1984
- Wilms tumor with aniridia/iris dysplasia and apparently normal chromosomesThe Journal of Pediatrics, 1982
- DNA sequence variants in the Gγ-, Aγ-, δ- and β-globin genes of manCell, 1979
- Ouabain as a selective agent in the isolation of somatic cell hybridsCytogenetic and Genome Research, 1975
- A membrane-filter technique for the detection of complementary DNABiochemical and Biophysical Research Communications, 1966