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  3. MSL2 variants lead to a neurodevelopmental syndrome with lack of coordination, epilepsy, specific dysmorphisms, and a distinct episignature.

MSL2 variants lead to a neurodevelopmental syndrome with lack of coordination, epilepsy, specific dysmorphisms, and a distinct episignature.

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DOI
10.48350/197409
Publisher DOI
10.1016/j.ajhg.2024.05.001
PubMed ID
38815585
Abstract
Epigenetic dysregulation has emerged as an important etiological mechanism of neurodevelopmental disorders (NDDs). Pathogenic variation in epigenetic regulators can impair deposition of histone post-translational modifications leading to aberrant spatiotemporal gene expression during neurodevelopment. The male-specific lethal (MSL) complex is a prominent multi-subunit epigenetic regulator of gene expression and is responsible for histone 4 lysine 16 acetylation (H4K16ac). Using exome sequencing, here we identify a cohort of 25 individuals with heterozygous de novo variants in MSL complex member MSL2. MSL2 variants were associated with NDD phenotypes including global developmental delay, intellectual disability, hypotonia, and motor issues such as coordination problems, feeding difficulties, and gait disturbance. Dysmorphisms and behavioral and/or psychiatric conditions, including autism spectrum disorder, and to a lesser extent, seizures, connective tissue disease signs, sleep disturbance, vision problems, and other organ anomalies, were observed in affected individuals. As a molecular biomarker, a sensitive and specific DNA methylation episignature has been established. Induced pluripotent stem cells (iPSCs) derived from three members of our cohort exhibited reduced MSL2 levels. Remarkably, while NDD-associated variants in two other members of the MSL complex (MOF and MSL3) result in reduced H4K16ac, global H4K16ac levels are unchanged in iPSCs with MSL2 variants. Regardless, MSL2 variants altered the expression of MSL2 targets in iPSCs and upon their differentiation to early germ layers. Our study defines an MSL2-related disorder as an NDD with distinguishable clinical features, a specific blood DNA episignature, and a distinct, MSL2-specific molecular etiology compared to other MSL complex-related disorders.
Date Issued
2024-07-11
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
MSL2 autism connective tissue epigenetics epilepsy episignature iPSC male-specific lethal complex neurodevelopmental syndrome
Language(s)
en
Author(s)
Karayol, Remzi
Borroto, Maria Carla
Haghshenas, Sadegheh
Namasivayam, Anoja
Reilly, Jack
Levy, Michael A
Relator, Raissa
Kerkhof, Jennifer
McConkey, Haley
Shvedunova, Maria
Petersen, Andrea K
Magnussen, Kari
Zweier, Christiane Gertrud  
Universitätsklinik für Humangenetik  
Universitätsklinik für Humangenetik  
Vasileiou, Georgia
Reis, André
Savatt, Juliann M
Mulligan, Meghan R
Bicknell, Louise S
Poke, Gemma
Abu-El-Haija, Aya
Duis, Jessica
Hannig, Vickie
Srivastava, Siddharth
Barkoudah, Elizabeth
Hauser, Natalie S
van den Born, Myrthe
Hamiel, Uri
Henig, Noa
Baris Feldman, Hagit
McKee, Shane
Krapels, Ingrid P C
Lei, Yunping
Todorova, Albena
Yordanova, Ralitsa
Atemin, Slavena
Rogac, Mihael
McConnell, Vivienne
Chassevent, Anna
Barañano, Kristin W
Shashi, Vandana
Sullivan, Jennifer A
Peron, Angela
Iascone, Maria
Canevini, Maria P
Friedman, Jennifer
Reyes, Iris A
Kierstein, Janell
Shen, Joseph J
Ahmed, Faria N
Mao, Xiao
Almoguera, Berta
Blanco-Kelly, Fiona
Platzer, Konrad
Treu, Ariana-Berenike
Quilichini, Juliette
Bourgois, Alexia
Chatron, Nicolas
Januel, Louis
Rougeot, Christelle
Carere, Deanna Alexis
Monaghan, Kristin G
Rousseau, Justine
Myers, Kenneth A
Sadikovic, Bekim
Akhtar, Asifa
Campeau, Philippe M
Additional Credits
Universitätsklinik für Humangenetik  
Journal
American journal of human genetics
Publisher
Cell Press
ISSN
0002-9297
Access(Rights)
restricted
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