Bisulphite sequencing of the transient neonatal diabetes mellitus DMR facilitates a novel diagnostic test but reveals no methylation anomalies in patients of unknown aetiology
- 6 January 2005
- journal article
- Published by Springer Nature in Human Genetics
- Vol. 116 (4) , 255-261
- https://doi.org/10.1007/s00439-004-1236-1
Abstract
Transient neonatal diabetes mellitus (TNDM) is associated with overexpression of an imprinted locus on chromosome 6q24; this locus contains a differentially methylated region (DMR) consisting of an imprinted CpG island that normally allows expression only from the paternal allele of genes under its control. Three types of abnormality involving 6q24 are known to cause TNDM: paternal uniparental disomy of chromosome 6 (pUPD6), an isolated methylation defect of the imprinted CpG island at chromosome 6q24 and a duplication of 6q24 of paternal origin. A fourth group of patients has no identifiable anomaly of 6q24. Bisulphite sequencing of the DMR has facilitated the development of a diagnostic test for TNDM based on ratiometric methylation-specific polymerase chain reaction. We have applied this method to 45 cases of TNDM, including 12 with pUPD6, 11 with an isolated methylation mutation at 6q24, 16 with a duplication of 6q24 and six of unknown aetiology, together with 29 normal controls. All were correctly assigned. The method is therefore capable of detecting all known genetic causes of TNDM at 6q24, although pUPD6 and methylation mutation cases are not distinguished from one another. In addition, we have carried out bisulphite sequencing of the DMR to compare its methylation status between six TNDM patients with a known methylation mutation, six patients with no identifiable 6q24 mutation and six normal controls. Whereas methylation mutation patients showed a near-total absence of DNA methylation at the TNDM locus, the patients with no identified molecular anomaly showed no marked methylation variation from controls.Keywords
This publication has 28 references indexed in Scilit:
- Activating Mutations in the Gene Encoding the ATP-Sensitive Potassium-Channel Subunit Kir6.2 and Permanent Neonatal DiabetesNew England Journal of Medicine, 2004
- Epigenetic detection of human chromosome 14 uniparental disomyHuman Mutation, 2003
- A multiplex methylation PCR assay for identification of uniparental disomy of chromosome 7Human Mutation, 2003
- Duplications of chromosome 11p15 of maternal origin result in a phenotype that includes growth retardationHuman Genetics, 2002
- Relaxation of imprinted expression of ZAC and HYMAI in a patient with transient neonatal diabetes mellitusHuman Genetics, 2002
- Alternative splicing of the imprinted candidate tumor suppressor gene ZAC regulates its antiproliferative and DNA binding activitiesOncogene, 2001
- Diagnosis of maternal uniparental disomy of chromosome 7 with a methylation specific PCR assayJournal of Medical Genetics, 2000
- An imprinted locus associated with transient neonatal diabetes mellitusHuman Molecular Genetics, 2000
- Further evidence for an imprinted gene for neonatal diabetes localised to chromosome 6q22-q23Human Molecular Genetics, 1996
- An imprinted gene(s) for diabetes?Nature Genetics, 1995