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PMID: 42556336 已发表 · aheadofprint 英语

Variants leading to ELAVL2 haploinsufficiency cause a neurodevelopmental disorder with prominent cognitive, behavioral, and neurological features.

Boon M, Mulligan MR, Verseput JJA, Šakić B, Schreurs P, Coll-Tané M, Accogli A, Alderman E, Athey T, Boerkoel C, Boni A, Caumes R, Gerkes E, Haase S, Jaillard S, Jeffries L, Kannu P, Konstantino M, Lévy J, Lokchine A, Massink M, Samra NN, Oegema R, Scala M, Schieving J, Schwartzmann S, Sczakiel HL, Smol T, Striano P, Verloes A, Begtrup A, Pfundt R, Franke B, Klein M, Schenck A, Bicknell LS, de Vries BBA

摘要

RNA-binding proteins (RBPs) regulate gene expression, and a number of RBPs have been implicated in brain function and behavior. Here, we report 16 individuals with a neurodevelopmental disorder and de novo heterozygous variants in ELAVL2, encoding an RBP not previously linked to Mendelian disease. Thirteen individuals were identified through GeneMatcher. Their ELAVL2 variants include two structural, five nonsense, and six missense variants, supporting haploinsufficiency as the primary disease mechanism. The cohort presented with developmental delay, intellectual disability, autism spectrum disorder, seizures, sleep problems, sensory processing issues, emotional instability, and difficulty with socialization. Three additional variants (two missense and one terminal exon truncation), each previously reported in a different large cohort study, were also included for follow-up investigations. We provide multiple lines of evidence linking variants in ELAVL2 to the observed neurodevelopmental and behavioral phenotypes. First, we show that common genetic variants in ELAVL2 are significantly associated with intelligence, motor development, sleep-related traits, and sociability in the general population. Drosophila loss-of-function models provide further independent evidence for a conserved role in the regulation of seizure-like behavior, sensory processing, and sleep. Molecular studies confirm that some of the missense variants are deleterious, leading to decreased protein levels. Together, our integrative study combining Mendelian genetics, clinical and association studies, and animal and molecular modeling supports variants in ELAVL2 as a cause of a neurodevelopmental disorder, with haploinsufficiency as the disease mechanism, and identifies crucial roles of ELAVL2 in neuronal function, cognition, and behavior.

关键词
Drosophila ELAV2 RNA-binding protein common variation molecular modeling neurodevelopmental disorder
文献信息
期刊
American journal of human genetics
期刊简称
Am J Hum Genet
ISSN
1537-6605
发表日期
2026-08-05
语言
英语
国家/地区
United States
NLM ID
0370475
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