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BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription

Intellectual disability (ID) is a common condition with considerable genetic heterogeneity. Next-generation sequencing of large cohorts has identified an increasing number of genes implicated in ID, but their roles in neurodevelopment remain largely unexplored. Here we report an ID syndrome caused b...

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Autores principales: Dias, Cristina, Estruch, Sara B., Graham, Sarah A., McRae, Jeremy, Sawiak, Stephen J., Hurst, Jane A., Joss, Shelagh K., Holder, Susan E., Morton, Jenny E.V., Turner, Claire, Thevenon, Julien, Mellul, Kelly, Sánchez-Andrade, Gabriela, Ibarra-Soria, Ximena, Deriziotis, Pelagia, Santos, Rui F., Lee, Song-Choon, Faivre, Laurence, Kleefstra, Tjitske, Liu, Pentao, Hurles, Mathew E., Fisher, Simon E., Logan, Darren W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974071/
https://www.ncbi.nlm.nih.gov/pubmed/27453576
http://dx.doi.org/10.1016/j.ajhg.2016.05.030
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author Dias, Cristina
Estruch, Sara B.
Graham, Sarah A.
McRae, Jeremy
Sawiak, Stephen J.
Hurst, Jane A.
Joss, Shelagh K.
Holder, Susan E.
Morton, Jenny E.V.
Turner, Claire
Thevenon, Julien
Mellul, Kelly
Sánchez-Andrade, Gabriela
Ibarra-Soria, Ximena
Deriziotis, Pelagia
Santos, Rui F.
Lee, Song-Choon
Faivre, Laurence
Kleefstra, Tjitske
Liu, Pentao
Hurles, Mathew E.
Fisher, Simon E.
Logan, Darren W.
author_facet Dias, Cristina
Estruch, Sara B.
Graham, Sarah A.
McRae, Jeremy
Sawiak, Stephen J.
Hurst, Jane A.
Joss, Shelagh K.
Holder, Susan E.
Morton, Jenny E.V.
Turner, Claire
Thevenon, Julien
Mellul, Kelly
Sánchez-Andrade, Gabriela
Ibarra-Soria, Ximena
Deriziotis, Pelagia
Santos, Rui F.
Lee, Song-Choon
Faivre, Laurence
Kleefstra, Tjitske
Liu, Pentao
Hurles, Mathew E.
Fisher, Simon E.
Logan, Darren W.
author_sort Dias, Cristina
collection PubMed
description Intellectual disability (ID) is a common condition with considerable genetic heterogeneity. Next-generation sequencing of large cohorts has identified an increasing number of genes implicated in ID, but their roles in neurodevelopment remain largely unexplored. Here we report an ID syndrome caused by de novo heterozygous missense, nonsense, and frameshift mutations in BCL11A, encoding a transcription factor that is a putative member of the BAF swi/snf chromatin-remodeling complex. Using a comprehensive integrated approach to ID disease modeling, involving human cellular analyses coupled to mouse behavioral, neuroanatomical, and molecular phenotyping, we provide multiple lines of functional evidence for phenotypic effects. The etiological missense variants cluster in the amino-terminal region of human BCL11A, and we demonstrate that they all disrupt its localization, dimerization, and transcriptional regulatory activity, consistent with a loss of function. We show that Bcl11a haploinsufficiency in mice causes impaired cognition, abnormal social behavior, and microcephaly in accordance with the human phenotype. Furthermore, we identify shared aberrant transcriptional profiles in the cortex and hippocampus of these mouse models. Thus, our work implicates BCL11A haploinsufficiency in neurodevelopmental disorders and defines additional targets regulated by this gene, with broad relevance for our understanding of ID and related syndromes.
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spelling pubmed-49740712017-02-04 BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription Dias, Cristina Estruch, Sara B. Graham, Sarah A. McRae, Jeremy Sawiak, Stephen J. Hurst, Jane A. Joss, Shelagh K. Holder, Susan E. Morton, Jenny E.V. Turner, Claire Thevenon, Julien Mellul, Kelly Sánchez-Andrade, Gabriela Ibarra-Soria, Ximena Deriziotis, Pelagia Santos, Rui F. Lee, Song-Choon Faivre, Laurence Kleefstra, Tjitske Liu, Pentao Hurles, Mathew E. Fisher, Simon E. Logan, Darren W. Am J Hum Genet Article Intellectual disability (ID) is a common condition with considerable genetic heterogeneity. Next-generation sequencing of large cohorts has identified an increasing number of genes implicated in ID, but their roles in neurodevelopment remain largely unexplored. Here we report an ID syndrome caused by de novo heterozygous missense, nonsense, and frameshift mutations in BCL11A, encoding a transcription factor that is a putative member of the BAF swi/snf chromatin-remodeling complex. Using a comprehensive integrated approach to ID disease modeling, involving human cellular analyses coupled to mouse behavioral, neuroanatomical, and molecular phenotyping, we provide multiple lines of functional evidence for phenotypic effects. The etiological missense variants cluster in the amino-terminal region of human BCL11A, and we demonstrate that they all disrupt its localization, dimerization, and transcriptional regulatory activity, consistent with a loss of function. We show that Bcl11a haploinsufficiency in mice causes impaired cognition, abnormal social behavior, and microcephaly in accordance with the human phenotype. Furthermore, we identify shared aberrant transcriptional profiles in the cortex and hippocampus of these mouse models. Thus, our work implicates BCL11A haploinsufficiency in neurodevelopmental disorders and defines additional targets regulated by this gene, with broad relevance for our understanding of ID and related syndromes. Elsevier 2016-08-04 2016-07-21 /pmc/articles/PMC4974071/ /pubmed/27453576 http://dx.doi.org/10.1016/j.ajhg.2016.05.030 Text en © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dias, Cristina
Estruch, Sara B.
Graham, Sarah A.
McRae, Jeremy
Sawiak, Stephen J.
Hurst, Jane A.
Joss, Shelagh K.
Holder, Susan E.
Morton, Jenny E.V.
Turner, Claire
Thevenon, Julien
Mellul, Kelly
Sánchez-Andrade, Gabriela
Ibarra-Soria, Ximena
Deriziotis, Pelagia
Santos, Rui F.
Lee, Song-Choon
Faivre, Laurence
Kleefstra, Tjitske
Liu, Pentao
Hurles, Mathew E.
Fisher, Simon E.
Logan, Darren W.
BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription
title BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription
title_full BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription
title_fullStr BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription
title_full_unstemmed BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription
title_short BCL11A Haploinsufficiency Causes an Intellectual Disability Syndrome and Dysregulates Transcription
title_sort bcl11a haploinsufficiency causes an intellectual disability syndrome and dysregulates transcription
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974071/
https://www.ncbi.nlm.nih.gov/pubmed/27453576
http://dx.doi.org/10.1016/j.ajhg.2016.05.030
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