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Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy

The neuronal SNARE complex drives synaptic vesicle exocytosis. Therefore, one of its core proteins syntaxin 1A (STX1A) has long been suspected to play a role in neurodevelopmental disorders. We assembled eight individuals harboring ultra rare variants in STX1A who present with a spectrum of intellec...

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Autores principales: Luppe, Johannes, Sticht, Heinrich, Lecoquierre, François, Goldenberg, Alice, Gorman, Kathleen M., Molloy, Ben, Agolini, Emanuele, Novelli, Antonio, Briuglia, Silvana, Kuismin, Outi, Marcelis, Carlo, Vitobello, Antonio, Denommé-Pichon, Anne-Sophie, Julia, Sophie, Lemke, Johannes R., Abou Jamra, Rami, Platzer, Konrad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9995539/
https://www.ncbi.nlm.nih.gov/pubmed/36564538
http://dx.doi.org/10.1038/s41431-022-01269-6
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author Luppe, Johannes
Sticht, Heinrich
Lecoquierre, François
Goldenberg, Alice
Gorman, Kathleen M.
Molloy, Ben
Agolini, Emanuele
Novelli, Antonio
Briuglia, Silvana
Kuismin, Outi
Marcelis, Carlo
Vitobello, Antonio
Denommé-Pichon, Anne-Sophie
Julia, Sophie
Lemke, Johannes R.
Abou Jamra, Rami
Platzer, Konrad
author_facet Luppe, Johannes
Sticht, Heinrich
Lecoquierre, François
Goldenberg, Alice
Gorman, Kathleen M.
Molloy, Ben
Agolini, Emanuele
Novelli, Antonio
Briuglia, Silvana
Kuismin, Outi
Marcelis, Carlo
Vitobello, Antonio
Denommé-Pichon, Anne-Sophie
Julia, Sophie
Lemke, Johannes R.
Abou Jamra, Rami
Platzer, Konrad
author_sort Luppe, Johannes
collection PubMed
description The neuronal SNARE complex drives synaptic vesicle exocytosis. Therefore, one of its core proteins syntaxin 1A (STX1A) has long been suspected to play a role in neurodevelopmental disorders. We assembled eight individuals harboring ultra rare variants in STX1A who present with a spectrum of intellectual disability, autism and epilepsy. Causative variants comprise a homozygous splice variant, three de novo missense variants and two inframe deletions of a single amino acid. We observed a phenotype mainly driven by epilepsy in the individuals with missense variants in contrast to intellectual disability and autistic behavior in individuals with single amino acid deletions and the splicing variant. In silico modeling of missense variants and single amino acid deletions show different impaired protein-protein interactions. We hypothesize the two phenotypic courses of affected individuals to be dependent on two different pathogenic mechanisms: (1) a weakened inhibitory STX1A-STXBP1 interaction due to missense variants results in an STX1A-related developmental epileptic encephalopathy and (2) a hampered SNARE complex formation due to inframe deletions causes an STX1A-related intellectual disability and autism phenotype. Our description of a STX1A-related neurodevelopmental disorder with or without epilepsy thus expands the group of rare diseases called SNAREopathies.
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spelling pubmed-99955392023-03-10 Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy Luppe, Johannes Sticht, Heinrich Lecoquierre, François Goldenberg, Alice Gorman, Kathleen M. Molloy, Ben Agolini, Emanuele Novelli, Antonio Briuglia, Silvana Kuismin, Outi Marcelis, Carlo Vitobello, Antonio Denommé-Pichon, Anne-Sophie Julia, Sophie Lemke, Johannes R. Abou Jamra, Rami Platzer, Konrad Eur J Hum Genet Article The neuronal SNARE complex drives synaptic vesicle exocytosis. Therefore, one of its core proteins syntaxin 1A (STX1A) has long been suspected to play a role in neurodevelopmental disorders. We assembled eight individuals harboring ultra rare variants in STX1A who present with a spectrum of intellectual disability, autism and epilepsy. Causative variants comprise a homozygous splice variant, three de novo missense variants and two inframe deletions of a single amino acid. We observed a phenotype mainly driven by epilepsy in the individuals with missense variants in contrast to intellectual disability and autistic behavior in individuals with single amino acid deletions and the splicing variant. In silico modeling of missense variants and single amino acid deletions show different impaired protein-protein interactions. We hypothesize the two phenotypic courses of affected individuals to be dependent on two different pathogenic mechanisms: (1) a weakened inhibitory STX1A-STXBP1 interaction due to missense variants results in an STX1A-related developmental epileptic encephalopathy and (2) a hampered SNARE complex formation due to inframe deletions causes an STX1A-related intellectual disability and autism phenotype. Our description of a STX1A-related neurodevelopmental disorder with or without epilepsy thus expands the group of rare diseases called SNAREopathies. Springer International Publishing 2022-12-23 2023-03 /pmc/articles/PMC9995539/ /pubmed/36564538 http://dx.doi.org/10.1038/s41431-022-01269-6 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Luppe, Johannes
Sticht, Heinrich
Lecoquierre, François
Goldenberg, Alice
Gorman, Kathleen M.
Molloy, Ben
Agolini, Emanuele
Novelli, Antonio
Briuglia, Silvana
Kuismin, Outi
Marcelis, Carlo
Vitobello, Antonio
Denommé-Pichon, Anne-Sophie
Julia, Sophie
Lemke, Johannes R.
Abou Jamra, Rami
Platzer, Konrad
Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy
title Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy
title_full Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy
title_fullStr Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy
title_full_unstemmed Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy
title_short Heterozygous and homozygous variants in STX1A cause a neurodevelopmental disorder with or without epilepsy
title_sort heterozygous and homozygous variants in stx1a cause a neurodevelopmental disorder with or without epilepsy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9995539/
https://www.ncbi.nlm.nih.gov/pubmed/36564538
http://dx.doi.org/10.1038/s41431-022-01269-6
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