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Rare de novo gain-of-function missense variants in DOT1L are associated with developmental delay and congenital anomalies

delete2023-11-01
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OA
AI
Z
Zelha Nil
A
Ashish R. Deshwar
黄燕 (Yan Huang)
S
Scott Barish
X
Xi Zhang
S
Sanaa Choufani
P
Polona Le Quesne Stabej
I
Ian Hayes
P
Patrick Yap
C
Chad Haldeman‐Englert
C
Carolyn M. Wilson
T
Trine Prescott
K
Kristian Tveten
A
Arve Vøllo
D
Devon Haynes
P
Patricia G. Wheeler
J
Jessica Zon
C
Cheryl Cytrynbaum
R
Rebekah Jobling
M
Moira Blyth
S
Siddharth Banka
A
Alexandra Afenjar
C
Cyril Mignot
B
Boris Keren
O
Oguz Kanca
X
Xiao Mao
D
Daniel Wegner
K
Kathleen Sisco
M
Marwan Shinawi
M
Michael F. Wangler
R
Rosanna Weksberg
S
Shinya Yamamoto
G
Gregory Costain *
H
Hugo J. Bellen *
DOI:10.1016/j.ajhg.2023.09.009delete
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Abstract

Abstract

En 中文
Misregulation of histone lysine methylation is associated with several human cancers and with human developmental disorders. DOT1L is an evolutionarily conserved gene encoding a lysine methyltransferase (KMT) that methylates histone 3 lysine-79 (H3K79) and was not previously associated with a Mendelian disease in OMIM. We have identified nine unrelated individuals with seven different de novo heterozygous missense variants in DOT1L through the Undiagnosed Disease Network (UDN), the SickKids Complex Care genomics proj-ect, and GeneMatcher. All probands had some degree of global developmental delay/intellectual disability, and most had one or more major congenital anomalies. To assess the pathogenicity of the DOT1L variants, functional studies were performed in Drosophila and human cells. The fruit fly DOT1L ortholog, grappa, is expressed in most cells including neurons in the central nervous system. The iden-tified DOT1L variants behave as gain-of-function alleles in flies and lead to increased H3K79 methylation levels in flies and human cells. Our results show that human DOT1L and fly grappa are required for proper development and that de novo heterozygous variants in DOT1L are associated with a Mendelian disease.
Keywords:
HISTONE H3
H3K79 METHYLATION
LYSINE METHYLATION
DOT1L
GENE
DOMAIN
TRANSCRIPTION
RECRUITMENT
VERSATILE
PLATFORM
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Journal

American Journal of Human Genetics cover
American Journal of Human Genetics
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