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Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator

Extensive epigenetic remodeling occurs during the cell fate determination of stem cells. Previously, we discovered that eudesmin regulates lineage commitment of mesenchymal stem cells through the inhibition of signaling molecules. However, the epigenetic modulations upon eudesmin treatment in genome...

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Autores principales: Yi, Sang Ah, Nam, Ki Hong, Lee, Min Gyu, Oh, Hwamok, Noh, Jae Sung, Jeong, Jae Kyun, Kwak, Sangwoo, Jeon, Ye Ji, Kwon, So Hee, Lee, Jaecheol, Han, Jeung-Whan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465685/
https://www.ncbi.nlm.nih.gov/pubmed/34577136
http://dx.doi.org/10.3390/molecules26185665
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author Yi, Sang Ah
Nam, Ki Hong
Lee, Min Gyu
Oh, Hwamok
Noh, Jae Sung
Jeong, Jae Kyun
Kwak, Sangwoo
Jeon, Ye Ji
Kwon, So Hee
Lee, Jaecheol
Han, Jeung-Whan
author_facet Yi, Sang Ah
Nam, Ki Hong
Lee, Min Gyu
Oh, Hwamok
Noh, Jae Sung
Jeong, Jae Kyun
Kwak, Sangwoo
Jeon, Ye Ji
Kwon, So Hee
Lee, Jaecheol
Han, Jeung-Whan
author_sort Yi, Sang Ah
collection PubMed
description Extensive epigenetic remodeling occurs during the cell fate determination of stem cells. Previously, we discovered that eudesmin regulates lineage commitment of mesenchymal stem cells through the inhibition of signaling molecules. However, the epigenetic modulations upon eudesmin treatment in genomewide level have not been analyzed. Here, we present a transcriptome profiling data showing the enrichment in PRC2 target genes by eudesmin treatment. Furthermore, gene ontology analysis showed that PRC2 target genes downregulated by eudesmin are closely related to Wnt signaling and pluripotency. We selected DKK1 as an eudesmin-dependent potential top hub gene in the Wnt signaling and pluripotency. Through the ChIP-qPCR and RT-qPCR, we found that eudesmin treatment increased the occupancy of PRC2 components, EZH2 and SUZ12, and H3K27me3 level on the promoter region of DKK1, downregulating its transcription level. According to the analysis of GEO profiles, DEGs by depletion of Oct4 showed an opposite pattern to DEGs by eudesmin treatment. Indeed, the expression of pluripotency markers, Oct4, Sox2, and Nanog, was upregulated upon eudesmin treatment. This finding demonstrates that pharmacological modulation of PRC2 dynamics by eudesmin might control Wnt signaling and maintain pluripotency of stem cells.
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spelling pubmed-84656852021-09-27 Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator Yi, Sang Ah Nam, Ki Hong Lee, Min Gyu Oh, Hwamok Noh, Jae Sung Jeong, Jae Kyun Kwak, Sangwoo Jeon, Ye Ji Kwon, So Hee Lee, Jaecheol Han, Jeung-Whan Molecules Communication Extensive epigenetic remodeling occurs during the cell fate determination of stem cells. Previously, we discovered that eudesmin regulates lineage commitment of mesenchymal stem cells through the inhibition of signaling molecules. However, the epigenetic modulations upon eudesmin treatment in genomewide level have not been analyzed. Here, we present a transcriptome profiling data showing the enrichment in PRC2 target genes by eudesmin treatment. Furthermore, gene ontology analysis showed that PRC2 target genes downregulated by eudesmin are closely related to Wnt signaling and pluripotency. We selected DKK1 as an eudesmin-dependent potential top hub gene in the Wnt signaling and pluripotency. Through the ChIP-qPCR and RT-qPCR, we found that eudesmin treatment increased the occupancy of PRC2 components, EZH2 and SUZ12, and H3K27me3 level on the promoter region of DKK1, downregulating its transcription level. According to the analysis of GEO profiles, DEGs by depletion of Oct4 showed an opposite pattern to DEGs by eudesmin treatment. Indeed, the expression of pluripotency markers, Oct4, Sox2, and Nanog, was upregulated upon eudesmin treatment. This finding demonstrates that pharmacological modulation of PRC2 dynamics by eudesmin might control Wnt signaling and maintain pluripotency of stem cells. MDPI 2021-09-18 /pmc/articles/PMC8465685/ /pubmed/34577136 http://dx.doi.org/10.3390/molecules26185665 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Yi, Sang Ah
Nam, Ki Hong
Lee, Min Gyu
Oh, Hwamok
Noh, Jae Sung
Jeong, Jae Kyun
Kwak, Sangwoo
Jeon, Ye Ji
Kwon, So Hee
Lee, Jaecheol
Han, Jeung-Whan
Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator
title Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator
title_full Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator
title_fullStr Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator
title_full_unstemmed Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator
title_short Transcriptomics-Based Repositioning of Natural Compound, Eudesmin, as a PRC2 Modulator
title_sort transcriptomics-based repositioning of natural compound, eudesmin, as a prc2 modulator
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465685/
https://www.ncbi.nlm.nih.gov/pubmed/34577136
http://dx.doi.org/10.3390/molecules26185665
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