Deleterious, protein-altering variants in the transcriptional coregulator ZMYM3 in 27 individuals with a neurodevelopmental delay phenotype.

Details

Serval ID
serval:BIB_A025F20DEEB6
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Deleterious, protein-altering variants in the transcriptional coregulator ZMYM3 in 27 individuals with a neurodevelopmental delay phenotype.
Journal
American journal of human genetics
Author(s)
Hiatt S.M., Trajkova S., Sebastiano M.R., Partridge E.C., Abidi F.E., Anderson A., Ansar M., Antonarakis S.E., Azadi A., Bachmann-Gagescu R., Bartuli A., Benech C., Berkowitz J.L., Betti M.J., Brusco A., Cannon A., Caron G., Chen Y., Cochran M.E., Coleman T.F., Crenshaw M.M., Cuisset L., Curry C.J., Darvish H., Demirdas S., Descartes M., Douglas J., Dyment D.A., Elloumi H.Z., Ermondi G., Faoucher M., Farrow E.G., Felker S.A., Fisher H., Hurst ACE, Joset P., Kelly M.A., Kmoch S., Leadem B.R., Lyons M.J., Macchiaiolo M., Magner M., Mandrile G., Mattioli F., McEown M., Meadows S.K., Medne L., Meeks NJL, Montgomery S., Napier M.P., Natowicz M., Newberry K.M., Niceta M., Noskova L., Nowak C.B., Noyes A.G., Osmond M., Prijoles E.J., Pugh J., Pullano V., Quélin C., Rahimi-Aliabadi S., Rauch A., Redon S., Reymond A., Schwager C.R., Sellars E.A., Scheuerle A.E., Shukarova-Angelovska E., Skraban C., Stolerman E., Sullivan B.R., Tartaglia M., Thiffault I., Uguen K., Umaña L.A., van Bever Y., van der Crabben S.N., van Slegtenhorst M.A., Waisfisz Q., Washington C., Rodan L.H., Myers R.M., Cooper G.M.
ISSN
1537-6605 (Electronic)
ISSN-L
0002-9297
Publication state
Published
Issued date
02/02/2023
Peer-reviewed
Oui
Volume
110
Number
2
Pages
215-227
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
Abstract
Neurodevelopmental disorders (NDDs) result from highly penetrant variation in hundreds of different genes, some of which have not yet been identified. Using the MatchMaker Exchange, we assembled a cohort of 27 individuals with rare, protein-altering variation in the transcriptional coregulator ZMYM3, located on the X chromosome. Most (n = 24) individuals were males, 17 of which have a maternally inherited variant; six individuals (4 male, 2 female) harbor de novo variants. Overlapping features included developmental delay, intellectual disability, behavioral abnormalities, and a specific facial gestalt in a subset of males. Variants in almost all individuals (n = 26) are missense, including six that recurrently affect two residues. Four unrelated probands were identified with inherited variation affecting Arg441, a site at which variation has been previously seen in NDD-affected siblings, and two individuals have de novo variation resulting in p.Arg1294Cys (c.3880C>T). All variants affect evolutionarily conserved sites, and most are predicted to damage protein structure or function. ZMYM3 is relatively intolerant to variation in the general population, is widely expressed across human tissues, and encodes a component of the KDM1A-RCOR1 chromatin-modifying complex. ChIP-seq experiments on one variant, p.Arg1274Trp, indicate dramatically reduced genomic occupancy, supporting a hypomorphic effect. While we are unable to perform statistical evaluations to definitively support a causative role for variation in ZMYM3, the totality of the evidence, including 27 affected individuals, recurrent variation at two codons, overlapping phenotypic features, protein-modeling data, evolutionary constraint, and experimentally confirmed functional effects strongly support ZMYM3 as an NDD-associated gene.
Keywords
Humans, Male, Female, Neurodevelopmental Disorders/genetics, Intellectual Disability/genetics, Phenotype, Gene Expression Regulation, Face, Nervous System Malformations, Nuclear Proteins/genetics, Histone Demethylases/genetics, X-linked intellectual disability, ZMYM3, chromatin modifiers, neurodevelopmental disorder, transcriptional coregulators
Pubmed
Web of science
Create date
10/01/2023 14:51
Last modification date
11/03/2023 7:44
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