Epigenetic changes may contribute to the formation and spontaneous regression of retinoblastoma
- 1 September 1989
- journal article
- research article
- Published by Springer Nature in Human Genetics
- Vol. 83 (2) , 155-158
- https://doi.org/10.1007/bf00286709
Abstract
Summary Epigenetic models for tumor formation assume that oncogenic transformation results from changes in the activity of otherwise normal genes. Since gene activity can be inhibited by DNA methylation, and inactivation of tumor suppressor genes is a fundamental process in oncogenesis, we investigated the methylation status of the retinoblastoma suppressor gene (RB gene) on chromosome 13, in blood and tumor cells from 21 retinoblastoma patients. Using methylation-sensitive restriction enzymes and a cloned DNA probe for the unmethylated CpG island at the 5′ end of RB gene, we obtained evidence of hypermethylation of this gene in a sporadic unilateral retinoblastoma tumor. The closely linked esterase D gene and a CpG-rich island on chromosome 15 were not affected. We suggest that changes in the methylation pattern of the RB gene play a role in the development and spontaneous regression of some retinoblastoma tumors.Keywords
This publication has 30 references indexed in Scilit:
- Preferential mutation of paternally derived RB gene as the initial event in sporadic osteosarcomaNature, 1989
- Construction of a chromosome 15-specific linking library and identification of potential gene sequences*1Genomics, 1988
- The Inheritance of Epigenetic DefectsScience, 1987
- Allele-specific methylation of the human c-Ha-ras-1 geneCell, 1987
- Structural Evidence for the Authenticity of the Human Retinoblastoma GeneScience, 1987
- A human DNA segment with properties of the gene that predisposes to retinoblastoma and osteosarcomaNature, 1986
- CpG-rich islands and the function of DNA methylationNature, 1986
- Regional Assignment of Genes for Human Esterase D and Retinoblastoma to Chromosome Band 13q14Science, 1980
- Use of restriction enzymes to study eukaryotic DNA methylationJournal of Molecular Biology, 1978
- Mutation and Cancer: Statistical Study of RetinoblastomaProceedings of the National Academy of Sciences, 1971