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Damaging de novo missense variants in EEF1A2 lead to a developmental and degenerative epileptic-dyskinetic encephalopathy.

Authors :
Carvill GL
Helbig KL
Myers CT
Scala M
Huether R
Lewis S
Kruer TN
Guida BS
Bakhtiari S
Sebe J
Tang S
Stickney H
Oktay SU
Bhandiwad AA
Ramsey K
Narayanan V
Feyma T
Rohena LO
Accogli A
Severino M
Hollingsworth G
Gill D
Depienne C
Nava C
Sadleir LG
Caruso PA
Lin AE
Jansen FE
Koeleman B
Brilstra E
Willemsen MH
Kleefstra T
Sa J
Mathieu ML
Perrin L
Lesca G
Striano P
Casari G
Scheffer IE
Raible D
Sattlegger E
Capra V
Padilla-Lopez S
Mefford HC
Kruer MC
Source :
Human mutation [Hum Mutat] 2020 Jul; Vol. 41 (7), pp. 1263-1279. Date of Electronic Publication: 2020 Apr 06.
Publication Year :
2020

Abstract

Heterozygous de novo variants in the eukaryotic elongation factor EEF1A2 have previously been described in association with intellectual disability and epilepsy but never functionally validated. Here we report 14 new individuals with heterozygous EEF1A2 variants. We functionally validate multiple variants as protein-damaging using heterologous expression and complementation analysis. Our findings allow us to confirm multiple variants as pathogenic and broaden the phenotypic spectrum to include dystonia/choreoathetosis, and in some cases a degenerative course with cerebral and cerebellar atrophy. Pathogenic variants appear to act via a haploinsufficiency mechanism, disrupting both the protein synthesis and integrated stress response functions of EEF1A2. Our studies provide evidence that EEF1A2 is highly intolerant to variation and that de novo pathogenic variants lead to an epileptic-dyskinetic encephalopathy with both neurodevelopmental and neurodegenerative features. Developmental features may be driven by impaired synaptic protein synthesis during early brain development while progressive symptoms may be linked to an impaired ability to handle cytotoxic stressors.<br /> (© 2020 Wiley Periodicals, Inc.)

Details

Language :
English
ISSN :
1098-1004
Volume :
41
Issue :
7
Database :
MEDLINE
Journal :
Human mutation
Publication Type :
Academic Journal
Accession number :
32196822
Full Text :
https://doi.org/10.1002/humu.24015