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DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency

The DNA hypomethylation that occurs when embryonic stem cells (ESCs) are directed to the ground state of naive pluripotency by culturing in two small molecule inhibitors (2i) results in redistribution of polycomb (H3K27me3) away from its target loci. Here, we demonstrate that 3D genome organization...

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Autores principales: McLaughlin, Katy, Flyamer, Ilya M., Thomson, John P., Mjoseng, Heidi K., Shukla, Ruchi, Williamson, Iain, Grimes, Graeme R., Illingworth, Robert S., Adams, Ian R., Pennings, Sari, Meehan, Richard R., Bickmore, Wendy A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6856714/
https://www.ncbi.nlm.nih.gov/pubmed/31722211
http://dx.doi.org/10.1016/j.celrep.2019.10.031
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author McLaughlin, Katy
Flyamer, Ilya M.
Thomson, John P.
Mjoseng, Heidi K.
Shukla, Ruchi
Williamson, Iain
Grimes, Graeme R.
Illingworth, Robert S.
Adams, Ian R.
Pennings, Sari
Meehan, Richard R.
Bickmore, Wendy A.
author_facet McLaughlin, Katy
Flyamer, Ilya M.
Thomson, John P.
Mjoseng, Heidi K.
Shukla, Ruchi
Williamson, Iain
Grimes, Graeme R.
Illingworth, Robert S.
Adams, Ian R.
Pennings, Sari
Meehan, Richard R.
Bickmore, Wendy A.
author_sort McLaughlin, Katy
collection PubMed
description The DNA hypomethylation that occurs when embryonic stem cells (ESCs) are directed to the ground state of naive pluripotency by culturing in two small molecule inhibitors (2i) results in redistribution of polycomb (H3K27me3) away from its target loci. Here, we demonstrate that 3D genome organization is also altered in 2i, with chromatin decompaction at polycomb target loci and a loss of long-range polycomb interactions. By preventing DNA hypomethylation during the transition to the ground state, we are able to restore to ESC in 2i the H3K27me3 distribution, as well as polycomb-mediated 3D genome organization that is characteristic of primed ESCs grown in serum. However, these cells retain the functional characteristics of 2i ground-state ESCs. Our findings demonstrate the central role of DNA methylation in shaping major aspects of 3D genome organization but caution against assuming causal roles for the epigenome and 3D genome in gene regulation and function in ESCs.
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spelling pubmed-68567142019-11-21 DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency McLaughlin, Katy Flyamer, Ilya M. Thomson, John P. Mjoseng, Heidi K. Shukla, Ruchi Williamson, Iain Grimes, Graeme R. Illingworth, Robert S. Adams, Ian R. Pennings, Sari Meehan, Richard R. Bickmore, Wendy A. Cell Rep Article The DNA hypomethylation that occurs when embryonic stem cells (ESCs) are directed to the ground state of naive pluripotency by culturing in two small molecule inhibitors (2i) results in redistribution of polycomb (H3K27me3) away from its target loci. Here, we demonstrate that 3D genome organization is also altered in 2i, with chromatin decompaction at polycomb target loci and a loss of long-range polycomb interactions. By preventing DNA hypomethylation during the transition to the ground state, we are able to restore to ESC in 2i the H3K27me3 distribution, as well as polycomb-mediated 3D genome organization that is characteristic of primed ESCs grown in serum. However, these cells retain the functional characteristics of 2i ground-state ESCs. Our findings demonstrate the central role of DNA methylation in shaping major aspects of 3D genome organization but caution against assuming causal roles for the epigenome and 3D genome in gene regulation and function in ESCs. Cell Press 2019-11-12 /pmc/articles/PMC6856714/ /pubmed/31722211 http://dx.doi.org/10.1016/j.celrep.2019.10.031 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
McLaughlin, Katy
Flyamer, Ilya M.
Thomson, John P.
Mjoseng, Heidi K.
Shukla, Ruchi
Williamson, Iain
Grimes, Graeme R.
Illingworth, Robert S.
Adams, Ian R.
Pennings, Sari
Meehan, Richard R.
Bickmore, Wendy A.
DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency
title DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency
title_full DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency
title_fullStr DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency
title_full_unstemmed DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency
title_short DNA Methylation Directs Polycomb-Dependent 3D Genome Re-organization in Naive Pluripotency
title_sort dna methylation directs polycomb-dependent 3d genome re-organization in naive pluripotency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6856714/
https://www.ncbi.nlm.nih.gov/pubmed/31722211
http://dx.doi.org/10.1016/j.celrep.2019.10.031
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