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Loss of PRC2 subunits primes lineage choice during exit of pluripotency
Polycomb Repressive Complex 2 (PRC2) is crucial for the coordinated expression of genes during early embryonic development, catalyzing histone H3 lysine 27 trimethylation. Two distinct PRC2 complexes, PRC2.1 and PRC2.2, contain respectively MTF2 and JARID2 in embryonic stem cells (ESCs). In this stu...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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Nature Publishing Group UK
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8632979/ https://www.ncbi.nlm.nih.gov/pubmed/34848733 http://dx.doi.org/10.1038/s41467-021-27314-4 |
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author | Loh, Chet H. van Genesen, Siebe Perino, Matteo Bark, Magnus R. Veenstra, Gert Jan C. |
author_facet | Loh, Chet H. van Genesen, Siebe Perino, Matteo Bark, Magnus R. Veenstra, Gert Jan C. |
author_sort | Loh, Chet H. |
collection | PubMed |
description | Polycomb Repressive Complex 2 (PRC2) is crucial for the coordinated expression of genes during early embryonic development, catalyzing histone H3 lysine 27 trimethylation. Two distinct PRC2 complexes, PRC2.1 and PRC2.2, contain respectively MTF2 and JARID2 in embryonic stem cells (ESCs). In this study, we explored their roles in lineage specification and commitment, using single-cell transcriptomics and mouse embryoid bodies derived from Mtf2 and Jarid2 null ESCs. We observe that the loss of Mtf2 results in enhanced and faster differentiation towards cell fates from all germ layers, while the Jarid2 null cells are predominantly directed towards early differentiating precursors, with reduced efficiency towards mesendodermal lineages. These effects are caused by derepression of developmental regulators that are poised for activation in pluripotent cells and gain H3K4me3 at their promoters in the absence of PRC2 repression. Upon lineage commitment, the differentiation trajectories are relatively similar to those of wild-type cells. Together, our results uncover a major role for MTF2-containing PRC2.1 in balancing poised lineage-specific gene activation, whereas the contribution of JARID2-containing PRC2 is more selective in nature compared to MTF2. These data explain how PRC2 imposes thresholds for lineage choice during the exit of pluripotency. |
format | Online Article Text |
id | pubmed-8632979 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Nature Publishing Group UK |
record_format | MEDLINE/PubMed |
spelling | pubmed-86329792021-12-15 Loss of PRC2 subunits primes lineage choice during exit of pluripotency Loh, Chet H. van Genesen, Siebe Perino, Matteo Bark, Magnus R. Veenstra, Gert Jan C. Nat Commun Article Polycomb Repressive Complex 2 (PRC2) is crucial for the coordinated expression of genes during early embryonic development, catalyzing histone H3 lysine 27 trimethylation. Two distinct PRC2 complexes, PRC2.1 and PRC2.2, contain respectively MTF2 and JARID2 in embryonic stem cells (ESCs). In this study, we explored their roles in lineage specification and commitment, using single-cell transcriptomics and mouse embryoid bodies derived from Mtf2 and Jarid2 null ESCs. We observe that the loss of Mtf2 results in enhanced and faster differentiation towards cell fates from all germ layers, while the Jarid2 null cells are predominantly directed towards early differentiating precursors, with reduced efficiency towards mesendodermal lineages. These effects are caused by derepression of developmental regulators that are poised for activation in pluripotent cells and gain H3K4me3 at their promoters in the absence of PRC2 repression. Upon lineage commitment, the differentiation trajectories are relatively similar to those of wild-type cells. Together, our results uncover a major role for MTF2-containing PRC2.1 in balancing poised lineage-specific gene activation, whereas the contribution of JARID2-containing PRC2 is more selective in nature compared to MTF2. These data explain how PRC2 imposes thresholds for lineage choice during the exit of pluripotency. Nature Publishing Group UK 2021-11-30 /pmc/articles/PMC8632979/ /pubmed/34848733 http://dx.doi.org/10.1038/s41467-021-27314-4 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Article Loh, Chet H. van Genesen, Siebe Perino, Matteo Bark, Magnus R. Veenstra, Gert Jan C. Loss of PRC2 subunits primes lineage choice during exit of pluripotency |
title | Loss of PRC2 subunits primes lineage choice during exit of pluripotency |
title_full | Loss of PRC2 subunits primes lineage choice during exit of pluripotency |
title_fullStr | Loss of PRC2 subunits primes lineage choice during exit of pluripotency |
title_full_unstemmed | Loss of PRC2 subunits primes lineage choice during exit of pluripotency |
title_short | Loss of PRC2 subunits primes lineage choice during exit of pluripotency |
title_sort | loss of prc2 subunits primes lineage choice during exit of pluripotency |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8632979/ https://www.ncbi.nlm.nih.gov/pubmed/34848733 http://dx.doi.org/10.1038/s41467-021-27314-4 |
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