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Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation

The transcription factor zinc finger E-box binding protein 2 (ZEB2) controls embryonic and adult cell fate decisions and cellular maturation in many stem/progenitor cell types. Defects in these processes in specific cell types underlie several aspects of Mowat–Wilson syndrome (MOWS), which is caused...

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Autores principales: Birkhoff, Judith C, Brouwer, Rutger W W, Kolovos, Petros, Korporaal, Anne L, Bermejo-Santos, Ana, Boltsis, Ilias, Nowosad, Karol, van den Hout, Mirjam C G N, Grosveld, Frank G, van IJcken, Wilfred F J, Huylebroeck, Danny, Conidi, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7471508/
https://www.ncbi.nlm.nih.gov/pubmed/32628253
http://dx.doi.org/10.1093/hmg/ddaa141
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author Birkhoff, Judith C
Brouwer, Rutger W W
Kolovos, Petros
Korporaal, Anne L
Bermejo-Santos, Ana
Boltsis, Ilias
Nowosad, Karol
van den Hout, Mirjam C G N
Grosveld, Frank G
van IJcken, Wilfred F J
Huylebroeck, Danny
Conidi, Andrea
author_facet Birkhoff, Judith C
Brouwer, Rutger W W
Kolovos, Petros
Korporaal, Anne L
Bermejo-Santos, Ana
Boltsis, Ilias
Nowosad, Karol
van den Hout, Mirjam C G N
Grosveld, Frank G
van IJcken, Wilfred F J
Huylebroeck, Danny
Conidi, Andrea
author_sort Birkhoff, Judith C
collection PubMed
description The transcription factor zinc finger E-box binding protein 2 (ZEB2) controls embryonic and adult cell fate decisions and cellular maturation in many stem/progenitor cell types. Defects in these processes in specific cell types underlie several aspects of Mowat–Wilson syndrome (MOWS), which is caused by ZEB2 haplo-insufficiency. Human ZEB2, like mouse Zeb2, is located on chromosome 2 downstream of a ±3.5 Mb-long gene-desert, lacking any protein-coding gene. Using temporal targeted chromatin capture (T2C), we show major chromatin structural changes based on mapping in-cis proximities between the ZEB2 promoter and this gene desert during neural differentiation of human-induced pluripotent stem cells, including at early neuroprogenitor cell (NPC)/rosette state, where ZEB2 mRNA levels increase significantly. Combining T2C with histone-3 acetylation mapping, we identified three novel candidate enhancers about 500 kb upstream of the ZEB2 transcription start site. Functional luciferase-based assays in heterologous cells and NPCs reveal co-operation between these three enhancers. This study is the first to document in-cis Regulatory Elements located in ZEB2’s gene desert. The results further show the usability of T2C for future studies of ZEB2 REs in differentiation and maturation of multiple cell types and the molecular characterization of newly identified MOWS patients that lack mutations in ZEB2 protein-coding exons.
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spelling pubmed-74715082020-09-09 Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation Birkhoff, Judith C Brouwer, Rutger W W Kolovos, Petros Korporaal, Anne L Bermejo-Santos, Ana Boltsis, Ilias Nowosad, Karol van den Hout, Mirjam C G N Grosveld, Frank G van IJcken, Wilfred F J Huylebroeck, Danny Conidi, Andrea Hum Mol Genet General Article The transcription factor zinc finger E-box binding protein 2 (ZEB2) controls embryonic and adult cell fate decisions and cellular maturation in many stem/progenitor cell types. Defects in these processes in specific cell types underlie several aspects of Mowat–Wilson syndrome (MOWS), which is caused by ZEB2 haplo-insufficiency. Human ZEB2, like mouse Zeb2, is located on chromosome 2 downstream of a ±3.5 Mb-long gene-desert, lacking any protein-coding gene. Using temporal targeted chromatin capture (T2C), we show major chromatin structural changes based on mapping in-cis proximities between the ZEB2 promoter and this gene desert during neural differentiation of human-induced pluripotent stem cells, including at early neuroprogenitor cell (NPC)/rosette state, where ZEB2 mRNA levels increase significantly. Combining T2C with histone-3 acetylation mapping, we identified three novel candidate enhancers about 500 kb upstream of the ZEB2 transcription start site. Functional luciferase-based assays in heterologous cells and NPCs reveal co-operation between these three enhancers. This study is the first to document in-cis Regulatory Elements located in ZEB2’s gene desert. The results further show the usability of T2C for future studies of ZEB2 REs in differentiation and maturation of multiple cell types and the molecular characterization of newly identified MOWS patients that lack mutations in ZEB2 protein-coding exons. Oxford University Press 2020-08-29 2020-07-06 /pmc/articles/PMC7471508/ /pubmed/32628253 http://dx.doi.org/10.1093/hmg/ddaa141 Text en © The Author(s) 2020. Published by Oxford University Press. All rights reserved. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle General Article
Birkhoff, Judith C
Brouwer, Rutger W W
Kolovos, Petros
Korporaal, Anne L
Bermejo-Santos, Ana
Boltsis, Ilias
Nowosad, Karol
van den Hout, Mirjam C G N
Grosveld, Frank G
van IJcken, Wilfred F J
Huylebroeck, Danny
Conidi, Andrea
Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation
title Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation
title_full Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation
title_fullStr Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation
title_full_unstemmed Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation
title_short Targeted chromatin conformation analysis identifies novel distal neural enhancers of ZEB2 in pluripotent stem cell differentiation
title_sort targeted chromatin conformation analysis identifies novel distal neural enhancers of zeb2 in pluripotent stem cell differentiation
topic General Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7471508/
https://www.ncbi.nlm.nih.gov/pubmed/32628253
http://dx.doi.org/10.1093/hmg/ddaa141
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