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Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder

Kleefstra syndrome, caused by haploinsufficiency of euchromatin histone methyltransferase 1 (EHMT1), is characterized by intellectual disability (ID), autism spectrum disorder (ASD), characteristic facial dysmorphisms, and other variable clinical features. In addition to EHMT1 mutations, de novo var...

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Autores principales: Koemans, Tom S., Kleefstra, Tjitske, Chubak, Melissa C., Stone, Max H., Reijnders, Margot R. F., de Munnik, Sonja, Willemsen, Marjolein H., Fenckova, Michaela, Stumpel, Connie T. R. M., Bok, Levinus A., Sifuentes Saenz, Margarita, Byerly, Kyna A., Baughn, Linda B., Stegmann, Alexander P. A., Pfundt, Rolph, Zhou, Huiqing, van Bokhoven, Hans, Schenck, Annette, Kramer, Jamie M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5656305/
https://www.ncbi.nlm.nih.gov/pubmed/29069077
http://dx.doi.org/10.1371/journal.pgen.1006864
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author Koemans, Tom S.
Kleefstra, Tjitske
Chubak, Melissa C.
Stone, Max H.
Reijnders, Margot R. F.
de Munnik, Sonja
Willemsen, Marjolein H.
Fenckova, Michaela
Stumpel, Connie T. R. M.
Bok, Levinus A.
Sifuentes Saenz, Margarita
Byerly, Kyna A.
Baughn, Linda B.
Stegmann, Alexander P. A.
Pfundt, Rolph
Zhou, Huiqing
van Bokhoven, Hans
Schenck, Annette
Kramer, Jamie M.
author_facet Koemans, Tom S.
Kleefstra, Tjitske
Chubak, Melissa C.
Stone, Max H.
Reijnders, Margot R. F.
de Munnik, Sonja
Willemsen, Marjolein H.
Fenckova, Michaela
Stumpel, Connie T. R. M.
Bok, Levinus A.
Sifuentes Saenz, Margarita
Byerly, Kyna A.
Baughn, Linda B.
Stegmann, Alexander P. A.
Pfundt, Rolph
Zhou, Huiqing
van Bokhoven, Hans
Schenck, Annette
Kramer, Jamie M.
author_sort Koemans, Tom S.
collection PubMed
description Kleefstra syndrome, caused by haploinsufficiency of euchromatin histone methyltransferase 1 (EHMT1), is characterized by intellectual disability (ID), autism spectrum disorder (ASD), characteristic facial dysmorphisms, and other variable clinical features. In addition to EHMT1 mutations, de novo variants were reported in four additional genes (MBD5, SMARCB1, NR1I3, and KMT2C), in single individuals with clinical characteristics overlapping Kleefstra syndrome. Here, we present a novel cohort of five patients with de novo loss of function mutations affecting the histone methyltransferase KMT2C. Our clinical data delineates the KMT2C phenotypic spectrum and reinforces the phenotypic overlap with Kleefstra syndrome and other related ID disorders. To elucidate the common molecular basis of the neuropathology associated with mutations in KMT2C and EHMT1, we characterized the role of the Drosophila KMT2C ortholog, trithorax related (trr), in the nervous system. Similar to the Drosophila EHMT1 ortholog, G9a, trr is required in the mushroom body for short term memory. Trr ChIP-seq identified 3371 binding sites, mainly in the promoter of genes involved in neuronal processes. Transcriptional profiling of pan-neuronal trr knockdown and G9a null mutant fly heads identified 613 and 1123 misregulated genes, respectively. These gene sets show a significant overlap and are associated with nearly identical gene ontology enrichments. The majority of the observed biological convergence is derived from predicted indirect target genes. However, trr and G9a also have common direct targets, including the Drosophila ortholog of Arc (Arc1), a key regulator of synaptic plasticity. Our data highlight the clinical and molecular convergence between the KMT2 and EHMT protein families, which may contribute to a molecular network underlying a larger group of ID/ASD-related disorders.
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spelling pubmed-56563052017-11-09 Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder Koemans, Tom S. Kleefstra, Tjitske Chubak, Melissa C. Stone, Max H. Reijnders, Margot R. F. de Munnik, Sonja Willemsen, Marjolein H. Fenckova, Michaela Stumpel, Connie T. R. M. Bok, Levinus A. Sifuentes Saenz, Margarita Byerly, Kyna A. Baughn, Linda B. Stegmann, Alexander P. A. Pfundt, Rolph Zhou, Huiqing van Bokhoven, Hans Schenck, Annette Kramer, Jamie M. PLoS Genet Research Article Kleefstra syndrome, caused by haploinsufficiency of euchromatin histone methyltransferase 1 (EHMT1), is characterized by intellectual disability (ID), autism spectrum disorder (ASD), characteristic facial dysmorphisms, and other variable clinical features. In addition to EHMT1 mutations, de novo variants were reported in four additional genes (MBD5, SMARCB1, NR1I3, and KMT2C), in single individuals with clinical characteristics overlapping Kleefstra syndrome. Here, we present a novel cohort of five patients with de novo loss of function mutations affecting the histone methyltransferase KMT2C. Our clinical data delineates the KMT2C phenotypic spectrum and reinforces the phenotypic overlap with Kleefstra syndrome and other related ID disorders. To elucidate the common molecular basis of the neuropathology associated with mutations in KMT2C and EHMT1, we characterized the role of the Drosophila KMT2C ortholog, trithorax related (trr), in the nervous system. Similar to the Drosophila EHMT1 ortholog, G9a, trr is required in the mushroom body for short term memory. Trr ChIP-seq identified 3371 binding sites, mainly in the promoter of genes involved in neuronal processes. Transcriptional profiling of pan-neuronal trr knockdown and G9a null mutant fly heads identified 613 and 1123 misregulated genes, respectively. These gene sets show a significant overlap and are associated with nearly identical gene ontology enrichments. The majority of the observed biological convergence is derived from predicted indirect target genes. However, trr and G9a also have common direct targets, including the Drosophila ortholog of Arc (Arc1), a key regulator of synaptic plasticity. Our data highlight the clinical and molecular convergence between the KMT2 and EHMT protein families, which may contribute to a molecular network underlying a larger group of ID/ASD-related disorders. Public Library of Science 2017-10-25 /pmc/articles/PMC5656305/ /pubmed/29069077 http://dx.doi.org/10.1371/journal.pgen.1006864 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Koemans, Tom S.
Kleefstra, Tjitske
Chubak, Melissa C.
Stone, Max H.
Reijnders, Margot R. F.
de Munnik, Sonja
Willemsen, Marjolein H.
Fenckova, Michaela
Stumpel, Connie T. R. M.
Bok, Levinus A.
Sifuentes Saenz, Margarita
Byerly, Kyna A.
Baughn, Linda B.
Stegmann, Alexander P. A.
Pfundt, Rolph
Zhou, Huiqing
van Bokhoven, Hans
Schenck, Annette
Kramer, Jamie M.
Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder
title Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder
title_full Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder
title_fullStr Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder
title_full_unstemmed Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder
title_short Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder
title_sort functional convergence of histone methyltransferases ehmt1 and kmt2c involved in intellectual disability and autism spectrum disorder
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5656305/
https://www.ncbi.nlm.nih.gov/pubmed/29069077
http://dx.doi.org/10.1371/journal.pgen.1006864
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