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DNA methylation signature for EZH2 functionally classifies sequence variants in three PRC2 complex genes

Authors :
Michael Brudno
Andrei L. Turinsky
Sharri Cyrus
David Chitayat
Brian H.Y. Chung
Maria Iascone
Luk Ho Ming
Tom Cushing
Eri Imagawa
Ana S A Cohen
Lynne M. Bird
Nobuhiko Okamoto
Vivienne McConnell
Stephen W. Scherer
Rosanna Weksberg
Jack Brzezinski
Kopal Garg
Carol L. Clericuzio
Roberto Mendoza-Londono
Susan M. White
Tianren Wang
Miranda Splitt
Naomichi Matsumoto
Sanaa Choufani
Guiseppe Testa
Romano Tenconi
Alessandro Vitriolo
Jerry Machado
Katrina Tatton-Brown
I. Karen Temple
Cheryl Cytrynbaum
Frances Flinter
William T. Gibson
Oana Caluseriu
Bronwyn Kerr
Eric Chater-Diehl
Sarah J. Goodman
Sally Ann Lynch
Source :
American Journal of Human Genetics, American journal of human genetics, vol 106, iss 5
Publication Year :
2020

Abstract

Weaver syndrome (WS), an overgrowth/intellectual disability syndrome (OGID), is caused by pathogenic variants in the histone methyltransferase EZH2, which encodes a core component of the Polycomb repressive complex-2 (PRC2). Using genome-wide DNA methylation (DNAm) data for 187 individuals with OGID and 969 control subjects, we show that pathogenic variants in EZH2 generate a highly specific and sensitive DNAm signature reflecting the phenotype of WS. This signature can be used to distinguish loss-of-function from gain-of-function missense variants and to detect somatic mosaicism. We also show that the signature can accurately classify sequence variants in EED and SUZ12, which encode two other core components of PRC2, and predict the presence of pathogenic variants in undiagnosed individuals with OGID. The discovery of a functionally relevant signature with utility for diagnostic classification of sequence variants in EZH2, EED, and SUZ12 supports the emerging paradigm shift for implementation of DNAm signatures into diagnostics and translational research.

Details

Language :
English
ISSN :
15376605
Database :
OpenAIRE
Journal :
American Journal of Human Genetics, American journal of human genetics, vol 106, iss 5
Accession number :
edsair.doi.dedup.....8a200b0c344bc765ca84efcf4d26c3f7