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UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons

The dysregulation of genes in neurodevelopmental disorders that lead to social and cognitive phenotypes is a complex, multilayered process involving both genetics and epigenetics. Parent-of-origin effects of deletion and duplication of the 15q11-q13 locus leading to Angelman, Prader-Willi, and Dup15...

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Autores principales: Lopez, S. Jesse, Dunaway, Keith, Islam, M. Saharul, Mordaunt, Charles, Vogel Ciernia, Annie, Meguro-Horike, Makiko, Horike, Shin-ichi, Segal, David J., LaSalle, Janine M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5788436/
https://www.ncbi.nlm.nih.gov/pubmed/28925810
http://dx.doi.org/10.1080/15592294.2017.1376151
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author Lopez, S. Jesse
Dunaway, Keith
Islam, M. Saharul
Mordaunt, Charles
Vogel Ciernia, Annie
Meguro-Horike, Makiko
Horike, Shin-ichi
Segal, David J.
LaSalle, Janine M.
author_facet Lopez, S. Jesse
Dunaway, Keith
Islam, M. Saharul
Mordaunt, Charles
Vogel Ciernia, Annie
Meguro-Horike, Makiko
Horike, Shin-ichi
Segal, David J.
LaSalle, Janine M.
author_sort Lopez, S. Jesse
collection PubMed
description The dysregulation of genes in neurodevelopmental disorders that lead to social and cognitive phenotypes is a complex, multilayered process involving both genetics and epigenetics. Parent-of-origin effects of deletion and duplication of the 15q11-q13 locus leading to Angelman, Prader-Willi, and Dup15q syndromes are due to imprinted genes, including UBE3A, which is maternally expressed exclusively in neurons. UBE3A encodes a ubiquitin E3 ligase protein with multiple downstream targets, including RING1B, which in turn monoubiquitinates histone variant H2A.Z. To understand the impact of neuronal UBE3A levels on epigenome-wide marks of DNA methylation, histone variant H2A.Z positioning, active H3K4me3 promoter marks, and gene expression, we took a multi-layered genomics approach. We performed an siRNA knockdown of UBE3A in two human neuroblastoma cell lines, including parental SH-SY5Y and the SH(15M) model of Dup15q. Genes differentially methylated across cells with differing UBE3A levels were enriched for functions in gene regulation, DNA binding, and brain morphology. Importantly, we found that altering UBE3A levels had a profound epigenetic effect on the methylation levels of up to half of known imprinted genes. Genes with differential H2A.Z peaks in SH(15M) compared to SH-SY5Y were enriched for ubiquitin and protease functions and associated with autism, hypoactivity, and energy expenditure. Together, these results support a genome-wide epigenetic consequence of altered UBE3A levels in neurons and suggest that UBE3A regulates an imprinted gene network involving DNA methylation patterning and H2A.Z deposition.
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spelling pubmed-57884362018-01-31 UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons Lopez, S. Jesse Dunaway, Keith Islam, M. Saharul Mordaunt, Charles Vogel Ciernia, Annie Meguro-Horike, Makiko Horike, Shin-ichi Segal, David J. LaSalle, Janine M. Epigenetics Research Paper The dysregulation of genes in neurodevelopmental disorders that lead to social and cognitive phenotypes is a complex, multilayered process involving both genetics and epigenetics. Parent-of-origin effects of deletion and duplication of the 15q11-q13 locus leading to Angelman, Prader-Willi, and Dup15q syndromes are due to imprinted genes, including UBE3A, which is maternally expressed exclusively in neurons. UBE3A encodes a ubiquitin E3 ligase protein with multiple downstream targets, including RING1B, which in turn monoubiquitinates histone variant H2A.Z. To understand the impact of neuronal UBE3A levels on epigenome-wide marks of DNA methylation, histone variant H2A.Z positioning, active H3K4me3 promoter marks, and gene expression, we took a multi-layered genomics approach. We performed an siRNA knockdown of UBE3A in two human neuroblastoma cell lines, including parental SH-SY5Y and the SH(15M) model of Dup15q. Genes differentially methylated across cells with differing UBE3A levels were enriched for functions in gene regulation, DNA binding, and brain morphology. Importantly, we found that altering UBE3A levels had a profound epigenetic effect on the methylation levels of up to half of known imprinted genes. Genes with differential H2A.Z peaks in SH(15M) compared to SH-SY5Y were enriched for ubiquitin and protease functions and associated with autism, hypoactivity, and energy expenditure. Together, these results support a genome-wide epigenetic consequence of altered UBE3A levels in neurons and suggest that UBE3A regulates an imprinted gene network involving DNA methylation patterning and H2A.Z deposition. Taylor & Francis 2017-11-06 /pmc/articles/PMC5788436/ /pubmed/28925810 http://dx.doi.org/10.1080/15592294.2017.1376151 Text en © 2017 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited, and is not altered, transformed, or built upon in any way.
spellingShingle Research Paper
Lopez, S. Jesse
Dunaway, Keith
Islam, M. Saharul
Mordaunt, Charles
Vogel Ciernia, Annie
Meguro-Horike, Makiko
Horike, Shin-ichi
Segal, David J.
LaSalle, Janine M.
UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons
title UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons
title_full UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons
title_fullStr UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons
title_full_unstemmed UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons
title_short UBE3A-mediated regulation of imprinted genes and epigenome-wide marks in human neurons
title_sort ube3a-mediated regulation of imprinted genes and epigenome-wide marks in human neurons
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5788436/
https://www.ncbi.nlm.nih.gov/pubmed/28925810
http://dx.doi.org/10.1080/15592294.2017.1376151
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