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PMID: 16615080 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Epigenetic deregulation of imprinting in congenital diseases of aberrant growth.

Delaval K, Wagschal A, Feil R

Abstract

Human chromosome 11p15 comprises two imprinted domains important in the control of fetal and postnatal growth. Novel studies establish that imprinting at one of these, the IGF2-H19 domain, is epigenetically deregulated (with loss of DNA methylation) in Silver-Russell Syndrome (SRS), a congenital disease of growth retardation and asymmetry. Previously, the exact opposite epigenetic alteration (gain of DNA methylation) had been detected at the domain's 'imprinting control region' (ICR) in patients with Beckwith-Wiedemann Syndrome (BWS), a complex disorder of fetal overgrowth. However, more frequently, BWS is caused by loss of DNA methylation at the ICR that regulates the second imprinted domain at 11p15. Interestingly, a similar epigenetic alteration (with loss of methylation) at a putative ICR on human chromosome 6q24, is involved in transient neonatal diabetes mellitus (TNDM), a congenital disease with intrauterine growth retardation and a transient lack of insulin. Thus, fetal and postnatal growth is epigenetically controlled by different ICRs, at 11p15 and other chromosomal regions.

MeSH Terms
Beckwith-Wiedemann Syndrome/genetics Chromosomes, Human, Pair 11/genetics DNA Methylation Diabetes Mellitus/congenital,genetics Epigenesis, Genetic Female Genomic Imprinting Growth Disorders/congenital,genetics Humans Infant, Newborn Male Models, Genetic Pregnancy Syndrome
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Delaval Katia
Institute of Molecular Genetics, CNRS, UMR-5535, University of Montpellier II, France.
Wagschal Alexandre
Feil Robert
Article Info
Journal
BioEssays : news and reviews in molecular, cellular and developmental biology
Abbr.
Bioessays
ISSN
0265-9247
Published
2006-05-00
Pages
453-9
Language
English
Region
United States
NLM ID
8510851
Subset
IM
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