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A novel de novo point mutation of the OCT-binding site in the IGF2/ H19-imprinting control region in a Beckwith-Wiedemann syndrome patient.

Authors :
Higashimoto, K.
Jozaki, K.
Kosho, T.
Matsubara, K.
Fuke, T.
Yamada, D.
Yatsuki, H.
Maeda, T.
Ohtsuka, Y.
Nishioka, K.
Joh, K.
Koseki, H.
Ogata, T.
Soejima, H.
Source :
Clinical Genetics. Dec2014, Vol. 86 Issue 6, p539-544. 6p. 1 Chart, 2 Graphs.
Publication Year :
2014

Abstract

The IGF2/ H19-imprinting control region ( ICR1) functions as an insulator to methylation-sensitive binding of CTCF protein, and regulates imprinted expression of IGF2 and H19 in a parental origin-specific manner. ICR1 methylation defects cause abnormal expression of imprinted genes, leading to Beckwith-Wiedemann syndrome ( BWS) or Silver-Russell syndrome ( SRS). Not only ICR1 microdeletions involving the CTCF-binding site, but also point mutations and a small deletion of the OCT-binding site have been shown to trigger methylation defects in BWS. Here, mutational analysis of ICR1 in 11 BWS and 12 SRS patients with ICR1 methylation defects revealed a novel de novo point mutation of the OCT-binding site on the maternal allele in one BWS patient. In BWS, all reported mutations and the small deletion of the OCT-binding site, including our case, have occurred within repeat A2. These findings indicate that the OCT-binding site is important for maintaining an unmethylated status of maternal ICR1 in early embryogenesis. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00099163
Volume :
86
Issue :
6
Database :
Academic Search Index
Journal :
Clinical Genetics
Publication Type :
Academic Journal
Accession number :
99541854
Full Text :
https://doi.org/10.1111/cge.12318