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Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells

Neurodevelopmental disorders, such as autism spectrum disorders and schizophrenia, are complex disorders with a high degree of heritability. Genetic studies have identified several candidate genes associated with these disorders, including contactin-associated protein-like 2 (CNTNAP2). Traditionally...

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Autores principales: Lee, Inkyu S, Carvalho, Claudia M B, Douvaras, Panagiotis, Ho, Seok-Man, Hartley, Brigham J, Zuccherato, Luciana W, Ladran, Ian G, Siegel, Arthur J, McCarthy, Shane, Malhotra, Dheeraj, Sebat, Jonathan, Rapoport, Judith, Fossati, Valentina, Lupski, James R, Levy, Deborah L, Brennand, Kristen J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789165/
https://www.ncbi.nlm.nih.gov/pubmed/26985448
http://dx.doi.org/10.1038/npjschz.2015.19
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author Lee, Inkyu S
Carvalho, Claudia M B
Douvaras, Panagiotis
Ho, Seok-Man
Hartley, Brigham J
Zuccherato, Luciana W
Ladran, Ian G
Siegel, Arthur J
McCarthy, Shane
Malhotra, Dheeraj
Sebat, Jonathan
Rapoport, Judith
Fossati, Valentina
Lupski, James R
Levy, Deborah L
Brennand, Kristen J
author_facet Lee, Inkyu S
Carvalho, Claudia M B
Douvaras, Panagiotis
Ho, Seok-Man
Hartley, Brigham J
Zuccherato, Luciana W
Ladran, Ian G
Siegel, Arthur J
McCarthy, Shane
Malhotra, Dheeraj
Sebat, Jonathan
Rapoport, Judith
Fossati, Valentina
Lupski, James R
Levy, Deborah L
Brennand, Kristen J
author_sort Lee, Inkyu S
collection PubMed
description Neurodevelopmental disorders, such as autism spectrum disorders and schizophrenia, are complex disorders with a high degree of heritability. Genetic studies have identified several candidate genes associated with these disorders, including contactin-associated protein-like 2 (CNTNAP2). Traditionally, in animal models or in vitro, CNTNAP2 has been studied by genetic deletion or transcriptional knockdown, which reduces the expression of the entire gene; however, it remains unclear whether the mutations identified in clinical settings are sufficient to alter CNTNAP2 expression in human neurons. Here, using human induced pluripotent stem cells (hiPSCs) derived from two individuals with a large (289 kb) heterozygous deletion in CNTNAP2 (affecting exons 14–15) and discordant clinical outcomes, we have characterized CNTNAP2 expression patterns in hiPSC neural progenitor cells, two independent populations of hiPSC-derived neurons and hiPSC-derived oligodendrocyte precursor cells. First, we observed exon-specific changes in CNTNAP2 expression in both carriers; although the expression of exons 14–15 is significantly decreased, the expression of other exons is upregulated. Second, we observed significant differences in patterns of allele-specific expression in CNTNAP2 carriers that were consistent with the clinical outcome. Third, we observed a robust neural migration phenotype that correlated with diagnosis and exon- and allele-specific CNTNAP2 expression patterns, but not with genotype. In all, our data highlight the importance of considering the nature, location, and regulation of mutated alleles when attempting to connect genome wide association studies to gene function.
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spelling pubmed-47891652016-06-22 Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells Lee, Inkyu S Carvalho, Claudia M B Douvaras, Panagiotis Ho, Seok-Man Hartley, Brigham J Zuccherato, Luciana W Ladran, Ian G Siegel, Arthur J McCarthy, Shane Malhotra, Dheeraj Sebat, Jonathan Rapoport, Judith Fossati, Valentina Lupski, James R Levy, Deborah L Brennand, Kristen J NPJ Schizophr Brief Communication Neurodevelopmental disorders, such as autism spectrum disorders and schizophrenia, are complex disorders with a high degree of heritability. Genetic studies have identified several candidate genes associated with these disorders, including contactin-associated protein-like 2 (CNTNAP2). Traditionally, in animal models or in vitro, CNTNAP2 has been studied by genetic deletion or transcriptional knockdown, which reduces the expression of the entire gene; however, it remains unclear whether the mutations identified in clinical settings are sufficient to alter CNTNAP2 expression in human neurons. Here, using human induced pluripotent stem cells (hiPSCs) derived from two individuals with a large (289 kb) heterozygous deletion in CNTNAP2 (affecting exons 14–15) and discordant clinical outcomes, we have characterized CNTNAP2 expression patterns in hiPSC neural progenitor cells, two independent populations of hiPSC-derived neurons and hiPSC-derived oligodendrocyte precursor cells. First, we observed exon-specific changes in CNTNAP2 expression in both carriers; although the expression of exons 14–15 is significantly decreased, the expression of other exons is upregulated. Second, we observed significant differences in patterns of allele-specific expression in CNTNAP2 carriers that were consistent with the clinical outcome. Third, we observed a robust neural migration phenotype that correlated with diagnosis and exon- and allele-specific CNTNAP2 expression patterns, but not with genotype. In all, our data highlight the importance of considering the nature, location, and regulation of mutated alleles when attempting to connect genome wide association studies to gene function. Nature Publishing Group 2015-06-24 /pmc/articles/PMC4789165/ /pubmed/26985448 http://dx.doi.org/10.1038/npjschz.2015.19 Text en Copyright © 2015 Schizophrenia International Research Group/Nature Publishing Group http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Brief Communication
Lee, Inkyu S
Carvalho, Claudia M B
Douvaras, Panagiotis
Ho, Seok-Man
Hartley, Brigham J
Zuccherato, Luciana W
Ladran, Ian G
Siegel, Arthur J
McCarthy, Shane
Malhotra, Dheeraj
Sebat, Jonathan
Rapoport, Judith
Fossati, Valentina
Lupski, James R
Levy, Deborah L
Brennand, Kristen J
Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells
title Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells
title_full Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells
title_fullStr Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells
title_full_unstemmed Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells
title_short Characterization of molecular and cellular phenotypes associated with a heterozygous CNTNAP2 deletion using patient-derived hiPSC neural cells
title_sort characterization of molecular and cellular phenotypes associated with a heterozygous cntnap2 deletion using patient-derived hipsc neural cells
topic Brief Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789165/
https://www.ncbi.nlm.nih.gov/pubmed/26985448
http://dx.doi.org/10.1038/npjschz.2015.19
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