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RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity

For self-renewal, embryonic stem cells (ESCs) require the expression of specific transcription factors accompanied by a particular chromosome organization to maintain a balance between pluripotency and the capacity for rapid differentiation. However, how transcriptional regulation is linked to chrom...

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Autores principales: Nitzsche, Anja, Paszkowski-Rogacz, Maciej, Matarese, Filomena, Janssen-Megens, Eva M., Hubner, Nina C., Schulz, Herbert, de Vries, Ingrid, Ding, Li, Huebner, Norbert, Mann, Matthias, Stunnenberg, Hendrik G., Buchholz, Frank
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3093395/
https://www.ncbi.nlm.nih.gov/pubmed/21589869
http://dx.doi.org/10.1371/journal.pone.0019470
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author Nitzsche, Anja
Paszkowski-Rogacz, Maciej
Matarese, Filomena
Janssen-Megens, Eva M.
Hubner, Nina C.
Schulz, Herbert
de Vries, Ingrid
Ding, Li
Huebner, Norbert
Mann, Matthias
Stunnenberg, Hendrik G.
Buchholz, Frank
author_facet Nitzsche, Anja
Paszkowski-Rogacz, Maciej
Matarese, Filomena
Janssen-Megens, Eva M.
Hubner, Nina C.
Schulz, Herbert
de Vries, Ingrid
Ding, Li
Huebner, Norbert
Mann, Matthias
Stunnenberg, Hendrik G.
Buchholz, Frank
author_sort Nitzsche, Anja
collection PubMed
description For self-renewal, embryonic stem cells (ESCs) require the expression of specific transcription factors accompanied by a particular chromosome organization to maintain a balance between pluripotency and the capacity for rapid differentiation. However, how transcriptional regulation is linked to chromosome organization in ESCs is not well understood. Here we show that the cohesin component RAD21 exhibits a functional role in maintaining ESC identity through association with the pluripotency transcriptional network. ChIP-seq analyses of RAD21 reveal an ESC specific cohesin binding pattern that is characterized by CTCF independent co-localization of cohesin with pluripotency related transcription factors Oct4, Nanog, Sox2, Esrrb and Klf4. Upon ESC differentiation, most of these binding sites disappear and instead new CTCF independent RAD21 binding sites emerge, which are enriched for binding sites of transcription factors implicated in early differentiation. Furthermore, knock-down of RAD21 causes expression changes that are similar to expression changes after Nanog depletion, demonstrating the functional relevance of the RAD21 - pluripotency transcriptional network association. Finally, we show that Nanog physically interacts with the cohesin or cohesin interacting proteins STAG1 and WAPL further substantiating this association. Based on these findings we propose that a dynamic placement of cohesin by pluripotency transcription factors contributes to a chromosome organization supporting the ESC expression program.
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spelling pubmed-30933952011-05-17 RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity Nitzsche, Anja Paszkowski-Rogacz, Maciej Matarese, Filomena Janssen-Megens, Eva M. Hubner, Nina C. Schulz, Herbert de Vries, Ingrid Ding, Li Huebner, Norbert Mann, Matthias Stunnenberg, Hendrik G. Buchholz, Frank PLoS One Research Article For self-renewal, embryonic stem cells (ESCs) require the expression of specific transcription factors accompanied by a particular chromosome organization to maintain a balance between pluripotency and the capacity for rapid differentiation. However, how transcriptional regulation is linked to chromosome organization in ESCs is not well understood. Here we show that the cohesin component RAD21 exhibits a functional role in maintaining ESC identity through association with the pluripotency transcriptional network. ChIP-seq analyses of RAD21 reveal an ESC specific cohesin binding pattern that is characterized by CTCF independent co-localization of cohesin with pluripotency related transcription factors Oct4, Nanog, Sox2, Esrrb and Klf4. Upon ESC differentiation, most of these binding sites disappear and instead new CTCF independent RAD21 binding sites emerge, which are enriched for binding sites of transcription factors implicated in early differentiation. Furthermore, knock-down of RAD21 causes expression changes that are similar to expression changes after Nanog depletion, demonstrating the functional relevance of the RAD21 - pluripotency transcriptional network association. Finally, we show that Nanog physically interacts with the cohesin or cohesin interacting proteins STAG1 and WAPL further substantiating this association. Based on these findings we propose that a dynamic placement of cohesin by pluripotency transcription factors contributes to a chromosome organization supporting the ESC expression program. Public Library of Science 2011-05-12 /pmc/articles/PMC3093395/ /pubmed/21589869 http://dx.doi.org/10.1371/journal.pone.0019470 Text en Nitzsche 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
Nitzsche, Anja
Paszkowski-Rogacz, Maciej
Matarese, Filomena
Janssen-Megens, Eva M.
Hubner, Nina C.
Schulz, Herbert
de Vries, Ingrid
Ding, Li
Huebner, Norbert
Mann, Matthias
Stunnenberg, Hendrik G.
Buchholz, Frank
RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity
title RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity
title_full RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity
title_fullStr RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity
title_full_unstemmed RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity
title_short RAD21 Cooperates with Pluripotency Transcription Factors in the Maintenance of Embryonic Stem Cell Identity
title_sort rad21 cooperates with pluripotency transcription factors in the maintenance of embryonic stem cell identity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3093395/
https://www.ncbi.nlm.nih.gov/pubmed/21589869
http://dx.doi.org/10.1371/journal.pone.0019470
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