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Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation

Balanced chromosome abnormalities (BCAs) occur at a high frequency in healthy and diseased individuals, but cost-efficient strategies to identify BCAs and evaluate whether they contribute to a phenotype have not yet become widespread. Here we apply genome-wide mate-pair library sequencing to charact...

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Autores principales: Blake, Jonathon, Riddell, Andrew, Theiss, Susanne, Gonzalez, Alexis Perez, Haase, Bettina, Jauch, Anna, Janssen, Johannes W. G., Ibberson, David, Pavlinic, Dinko, Moog, Ute, Benes, Vladimir, Runz, Heiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3953210/
https://www.ncbi.nlm.nih.gov/pubmed/24625750
http://dx.doi.org/10.1371/journal.pone.0090894
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author Blake, Jonathon
Riddell, Andrew
Theiss, Susanne
Gonzalez, Alexis Perez
Haase, Bettina
Jauch, Anna
Janssen, Johannes W. G.
Ibberson, David
Pavlinic, Dinko
Moog, Ute
Benes, Vladimir
Runz, Heiko
author_facet Blake, Jonathon
Riddell, Andrew
Theiss, Susanne
Gonzalez, Alexis Perez
Haase, Bettina
Jauch, Anna
Janssen, Johannes W. G.
Ibberson, David
Pavlinic, Dinko
Moog, Ute
Benes, Vladimir
Runz, Heiko
author_sort Blake, Jonathon
collection PubMed
description Balanced chromosome abnormalities (BCAs) occur at a high frequency in healthy and diseased individuals, but cost-efficient strategies to identify BCAs and evaluate whether they contribute to a phenotype have not yet become widespread. Here we apply genome-wide mate-pair library sequencing to characterize structural variation in a patient with unclear neurodevelopmental disease (NDD) and complex de novo BCAs at the karyotype level. Nucleotide-level characterization of the clinically described BCA breakpoints revealed disruption of at least three NDD candidate genes (LINC00299, NUP205, PSMD14) that gave rise to abnormal mRNAs and could be assumed as disease-causing. However, unbiased genome-wide analysis of the sequencing data for cryptic structural variation was key to reveal an additional submicroscopic inversion that truncates the schizophrenia- and bipolar disorder-associated brain transcription factor ZNF804A as an equally likely NDD-driving gene. Deep sequencing of fluorescent-sorted wild-type and derivative chromosomes confirmed the clinically undetected BCA. Moreover, deep sequencing further validated a high accuracy of mate-pair library sequencing to detect structural variants larger than 10 kB, proposing that this approach is powerful for clinical-grade genome-wide structural variant detection. Our study supports previous evidence for a role of ZNF804A in NDD and highlights the need for a more comprehensive assessment of structural variation in karyotypically abnormal individuals and patients with neurocognitive disease to avoid diagnostic deception.
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spelling pubmed-39532102014-03-18 Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation Blake, Jonathon Riddell, Andrew Theiss, Susanne Gonzalez, Alexis Perez Haase, Bettina Jauch, Anna Janssen, Johannes W. G. Ibberson, David Pavlinic, Dinko Moog, Ute Benes, Vladimir Runz, Heiko PLoS One Research Article Balanced chromosome abnormalities (BCAs) occur at a high frequency in healthy and diseased individuals, but cost-efficient strategies to identify BCAs and evaluate whether they contribute to a phenotype have not yet become widespread. Here we apply genome-wide mate-pair library sequencing to characterize structural variation in a patient with unclear neurodevelopmental disease (NDD) and complex de novo BCAs at the karyotype level. Nucleotide-level characterization of the clinically described BCA breakpoints revealed disruption of at least three NDD candidate genes (LINC00299, NUP205, PSMD14) that gave rise to abnormal mRNAs and could be assumed as disease-causing. However, unbiased genome-wide analysis of the sequencing data for cryptic structural variation was key to reveal an additional submicroscopic inversion that truncates the schizophrenia- and bipolar disorder-associated brain transcription factor ZNF804A as an equally likely NDD-driving gene. Deep sequencing of fluorescent-sorted wild-type and derivative chromosomes confirmed the clinically undetected BCA. Moreover, deep sequencing further validated a high accuracy of mate-pair library sequencing to detect structural variants larger than 10 kB, proposing that this approach is powerful for clinical-grade genome-wide structural variant detection. Our study supports previous evidence for a role of ZNF804A in NDD and highlights the need for a more comprehensive assessment of structural variation in karyotypically abnormal individuals and patients with neurocognitive disease to avoid diagnostic deception. Public Library of Science 2014-03-13 /pmc/articles/PMC3953210/ /pubmed/24625750 http://dx.doi.org/10.1371/journal.pone.0090894 Text en © 2014 Blake et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Blake, Jonathon
Riddell, Andrew
Theiss, Susanne
Gonzalez, Alexis Perez
Haase, Bettina
Jauch, Anna
Janssen, Johannes W. G.
Ibberson, David
Pavlinic, Dinko
Moog, Ute
Benes, Vladimir
Runz, Heiko
Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation
title Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation
title_full Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation
title_fullStr Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation
title_full_unstemmed Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation
title_short Sequencing of a Patient with Balanced Chromosome Abnormalities and Neurodevelopmental Disease Identifies Disruption of Multiple High Risk Loci by Structural Variation
title_sort sequencing of a patient with balanced chromosome abnormalities and neurodevelopmental disease identifies disruption of multiple high risk loci by structural variation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3953210/
https://www.ncbi.nlm.nih.gov/pubmed/24625750
http://dx.doi.org/10.1371/journal.pone.0090894
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