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AMPA receptor GluA2 subunit defects are a cause of neurodevelopmental disorders.


ABSTRACT: AMPA receptors (AMPARs) are tetrameric ligand-gated channels made up of combinations of GluA1-4 subunits encoded by GRIA1-4 genes. GluA2 has an especially important role because, following post-transcriptional editing at the Q607 site, it renders heteromultimeric AMPARs Ca2+-impermeable, with a linear relationship between current and trans-membrane voltage. Here, we report heterozygous de novo GRIA2 mutations in 28 unrelated patients with intellectual disability (ID) and neurodevelopmental abnormalities including autism spectrum disorder (ASD), Rett syndrome-like features, and seizures or developmental epileptic encephalopathy (DEE). In functional expression studies, mutations lead to a decrease in agonist-evoked current mediated by mutant subunits compared to wild-type channels. When GluA2 subunits are co-expressed with GluA1, most GRIA2 mutations cause a decreased current amplitude and some also affect voltage rectification. Our results show that de-novo variants in GRIA2 can cause neurodevelopmental disorders, complementing evidence that other genetic causes of ID, ASD and DEE also disrupt glutamatergic synaptic transmission.

SUBMITTER: Salpietro V 

PROVIDER: S-EPMC6626132 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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AMPA receptor GluA2 subunit defects are a cause of neurodevelopmental disorders.

Salpietro Vincenzo V   Dixon Christine L CL   Guo Hui H   Bello Oscar D OD   Vandrovcova Jana J   Efthymiou Stephanie S   Maroofian Reza R   Heimer Gali G   Burglen Lydie L   Valence Stephanie S   Torti Erin E   Hacke Moritz M   Rankin Julia J   Tariq Huma H   Colin Estelle E   Procaccio Vincent V   Striano Pasquale P   Mankad Kshitij K   Lieb Andreas A   Chen Sharon S   Pisani Laura L   Bettencourt Conceicao C   Männikkö Roope R   Manole Andreea A   Brusco Alfredo A   Grosso Enrico E   Ferrero Giovanni Battista GB   Armstrong-Moron Judith J   Gueden Sophie S   Bar-Yosef Omer O   Tzadok Michal M   Monaghan Kristin G KG   Santiago-Sim Teresa T   Person Richard E RE   Cho Megan T MT   Willaert Rebecca R   Yoo Yongjin Y   Chae Jong-Hee JH   Quan Yingting Y   Wu Huidan H   Wang Tianyun T   Bernier Raphael A RA   Xia Kun K   Blesson Alyssa A   Jain Mahim M   Motazacker Mohammad M MM   Jaeger Bregje B   Schneider Amy L AL   Boysen Katja K   Muir Alison M AM   Myers Candace T CT   Gavrilova Ralitza H RH   Gunderson Lauren L   Schultz-Rogers Laura L   Klee Eric W EW   Dyment David D   Osmond Matthew M   Parellada Mara M   Llorente Cloe C   Gonzalez-Peñas Javier J   Carracedo Angel A   Van Haeringen Arie A   Ruivenkamp Claudia C   Nava Caroline C   Heron Delphine D   Nardello Rosaria R   Iacomino Michele M   Minetti Carlo C   Skabar Aldo A   Fabretto Antonella A   Raspall-Chaure Miquel M   Chez Michael M   Tsai Anne A   Fassi Emily E   Shinawi Marwan M   Constantino John N JN   De Zorzi Rita R   Fortuna Sara S   Kok Fernando F   Keren Boris B   Bonneau Dominique D   Choi Murim M   Benzeev Bruria B   Zara Federico F   Mefford Heather C HC   Scheffer Ingrid E IE   Clayton-Smith Jill J   Macaya Alfons A   Rothman James E JE   Eichler Evan E EE   Kullmann Dimitri M DM   Houlden Henry H  

Nature communications 20190712 1


AMPA receptors (AMPARs) are tetrameric ligand-gated channels made up of combinations of GluA1-4 subunits encoded by GRIA1-4 genes. GluA2 has an especially important role because, following post-transcriptional editing at the Q607 site, it renders heteromultimeric AMPARs Ca<sup>2+</sup>-impermeable, with a linear relationship between current and trans-membrane voltage. Here, we report heterozygous de novo GRIA2 mutations in 28 unrelated patients with intellectual disability (ID) and neurodevelopm  ...[more]

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