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DNA Methylation Signature for EZH2 Functionally Classifies Sequence Variants in Three PRC2 Complex Genes

delete2020-05-01
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OA
AI
S
Sanaa Choufani
W
William T. Gibson
A
Andrei L. Turinsky
B
Brian Hon‐Yin Chung
王天任 (Tianren Wang)
K
Kopal Garg
A
Alessandro Vitriolo
A
Ana S.A. Cohen
S
Sharri Cyrus
S
Sarah J. Goodman
E
Eric Chater‐Diehl
J
Jack Brzezinski
M
Michael Brudno
L
Luk Ho Ming
S
Susan M. White
S
Sally Ann Lynch
C
Carol L. Clericuzio
I
I. Karen Temple
F
Frances Flinter
V
Vivienne McConnell
T
Tom Cushing
L
Lynne M. Bird
M
Miranda Splitt
B
Bronwyn Kerr
S
Stephen W. Scherer
J
Jerry Machado
E
Eri Imagawa
N
Nobuhiko Okamoto
N
Naomichi Matsumoto
G
Giuseppe Testa
M
Maria Iascone
R
Romano Tenconi
O
Oana Caluseriu
R
Roberto Mendoza‐Londono
D
David Chitayat
C
Cheryl Cytrynbaum
K
Katrina Tatton‐Brown
R
Rosanna Weksberg *
DOI:10.1016/j.ajhg.2020.03.008delete
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Abstract

Abstract

En 中文
Weaver syndrome (WS), an overgrowth/intellectual disability syndrome (OGID), is caused by pathogenic variants in the histone methyl-transferase 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.
Keywords:
WEAVER SYNDROME
MUTATIONS
POLYCOMB
OVERGROWTH
ARRAY
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Journal

American Journal of Human Genetics cover
American Journal of Human Genetics
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Citations:
3.7W

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