Skip to main navigation Skip to search Skip to main content

Clinical and Neurodevelopmental Characteristics of Paralogous Gain-of-Function Variants at GRIA2 p.Gly792 and GRIA3 p.Gly803

  • Emilie Sjøstrøm
  • , Dorota Studniarczyk
  • , Xinyao Dou
  • , Rebekka S Dahl
  • , Vincent Cruz
  • , Heng Wang
  • , Sandra Mercier
  • , Wallid Deb
  • , Thomas Besnard
  • , Jennifer Friedman
  • , Miriam Essid
  • , Sana Karoui
  • , Lamia Ben Jemaa
  • , Thouraya Benyounes
  • , Gaetan Lesca
  • , Davide Tonduti
  • , Maria Iascone
  • , Simona Orcesi
  • , Melanie Fradin
  • , Christèle Dubourg
  • Silvia Napuri, Stuart G Cull-Candy, Ian D Coombs, Mark Farrant, Allan Bayat*
*Corresponding author for this work

Research output: Contribution to journalArticleResearchpeer-review

Abstract

GRIA-related disorders arise from disease-causing variants in GRIA1, GRIA2, GRIA3, or GRIA4 that encode α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid (AMPA)-type glutamate receptors (AMPARs). Rare monoallelic GRIA1-4 variants affecting AMPAR function can potentially lead to neurodevelopmental disorders. The impact on AMPAR function may manifest as either gain-of-function (GOF) or loss-of-function (LOF). We recruited nine unrelated patients with either known disease-causing GOF variants in GRIA3 at position p.Gly803 or variants at the paralogous position in GRIA2 (p.Gly792). Specifically, five patients carried a de novo GRIA3 variant (p.Gly803Glu or p.Gly803Val), one carried a maternally inherited GRIA3 variant (p.Gly803Ala) and three carried de novo GRIA2 variants (p.Gly792Arg, p.Gly792Val, or p.Gly792Glu) which we demonstrate are also GOF. Recurrent symptoms included developmental delay affecting both motor skills and language abilities; cognitive impairment; behavioral and psychiatric comorbidities; hypertonia, cerebral palsy, non-epileptic myoclonus, and treatment-resistant epilepsy. We also provide insights into social skills, levels of autonomy, living arrangements, and educational attainment. We compared the clinical features associated with the two paralogous GOF GRIA2 and GRIA3 variants. Our study elucidates the developmental aspects, cognitive abilities, seizure profiles, and behavioral challenges associated with these variants and contributes to advancing our understanding and treatment of patients affected by this rare condition.

Original languageEnglish
Pages (from-to)553-565
Number of pages13
JournalClinical Genetics
Volume108
Issue number5
Early online date20 May 2025
DOIs
Publication statusPublished - Nov 2025

Funding

We thank the family and caregivers for participating in this study. This publication has been supported by the European Reference Network on rare and complex epilepsies (Epi-CARE) and Rare Congenital Malformations and Rare Intellectual Disability (ERN-ITHACA). ERN-ITHACA is funded by the European Union, under the grant agreement N degrees 101156387. For the purpose of open access, the authors have applied a Creative Commons attribution (CC BY) licence to any Author Accepted Manuscript version arising.

FundersFunder number
CureGRIN FoundationNdegrees101156387
European Union

    Keywords

    • Ampar
    • Epilepsy
    • Natural history
    • Neurology
    • Syndrome
    • Genetic Predisposition to Disease
    • Humans
    • Receptors, AMPA/genetics
    • Child, Preschool
    • Male
    • Phenotype
    • Gain of Function Mutation/genetics
    • Adolescent
    • Female
    • Adult
    • Child
    • Neurodevelopmental Disorders/genetics

    Fingerprint

    Explore the research areas of 'Clinical and Neurodevelopmental Characteristics of Paralogous Gain-of-Function Variants at GRIA2 p.Gly792 and GRIA3 p.Gly803'.

    Cite this