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YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation

The Yes-associated protein (YAP), one of the major effectors of the Hippo pathway together with its related protein WW-domain-containing transcription regulator 1 (WWTR1; also known as TAZ), mediates a range of cellular processes from proliferation and death to morphogenesis. YAP and WW-domain-conta...

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Autores principales: Passaro, Fabiana, De Martino, Ilaria, Zambelli, Federico, Di Benedetto, Giorgia, Barbato, Matteo, D’Erchia, Anna Maria, Manzari, Caterina, Pesole, Graziano, Mutarelli, Margherita, Cacchiarelli, Davide, Antonini, Dario, Parisi, Silvia, Russo, Tommaso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948423/
https://www.ncbi.nlm.nih.gov/pubmed/33268382
http://dx.doi.org/10.1074/jbc.RA120.015896
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author Passaro, Fabiana
De Martino, Ilaria
Zambelli, Federico
Di Benedetto, Giorgia
Barbato, Matteo
D’Erchia, Anna Maria
Manzari, Caterina
Pesole, Graziano
Mutarelli, Margherita
Cacchiarelli, Davide
Antonini, Dario
Parisi, Silvia
Russo, Tommaso
author_facet Passaro, Fabiana
De Martino, Ilaria
Zambelli, Federico
Di Benedetto, Giorgia
Barbato, Matteo
D’Erchia, Anna Maria
Manzari, Caterina
Pesole, Graziano
Mutarelli, Margherita
Cacchiarelli, Davide
Antonini, Dario
Parisi, Silvia
Russo, Tommaso
author_sort Passaro, Fabiana
collection PubMed
description The Yes-associated protein (YAP), one of the major effectors of the Hippo pathway together with its related protein WW-domain-containing transcription regulator 1 (WWTR1; also known as TAZ), mediates a range of cellular processes from proliferation and death to morphogenesis. YAP and WW-domain-containing transcription regulator 1 (WWTR1; also known as TAZ) regulate a large number of target genes, acting as coactivators of DNA-binding transcription factors or as negative regulators of transcription by interacting with the nucleosome remodeling and histone deacetylase complexes. YAP is expressed in self-renewing embryonic stem cells (ESCs), although it is still debated whether it plays any crucial roles in the control of either stemness or differentiation. Here we show that the transient downregulation of YAP in mouse ESCs perturbs cellular homeostasis, leading to the inability to differentiate properly. Bisulfite genomic sequencing revealed that this transient knockdown caused a genome-wide alteration of the DNA methylation remodeling that takes place during the early steps of differentiation, suggesting that the phenotype we observed might be due to the dysregulation of some of the mechanisms involved in regulation of ESC exit from pluripotency. By gene expression analysis, we identified two molecules that could have a role in the altered genome-wide methylation profile: the long noncoding RNA ephemeron, whose rapid upregulation is crucial for the transition of ESCs into epiblast, and the methyltransferase-like protein Dnmt3l, which, during the embryo development, cooperates with Dnmt3a and Dnmt3b to contribute to the de novo DNA methylation that governs early steps of ESC differentiation. These data suggest a new role for YAP in the governance of the epigenetic dynamics of exit from pluripotency.
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spelling pubmed-79484232021-03-19 YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation Passaro, Fabiana De Martino, Ilaria Zambelli, Federico Di Benedetto, Giorgia Barbato, Matteo D’Erchia, Anna Maria Manzari, Caterina Pesole, Graziano Mutarelli, Margherita Cacchiarelli, Davide Antonini, Dario Parisi, Silvia Russo, Tommaso J Biol Chem Research Article The Yes-associated protein (YAP), one of the major effectors of the Hippo pathway together with its related protein WW-domain-containing transcription regulator 1 (WWTR1; also known as TAZ), mediates a range of cellular processes from proliferation and death to morphogenesis. YAP and WW-domain-containing transcription regulator 1 (WWTR1; also known as TAZ) regulate a large number of target genes, acting as coactivators of DNA-binding transcription factors or as negative regulators of transcription by interacting with the nucleosome remodeling and histone deacetylase complexes. YAP is expressed in self-renewing embryonic stem cells (ESCs), although it is still debated whether it plays any crucial roles in the control of either stemness or differentiation. Here we show that the transient downregulation of YAP in mouse ESCs perturbs cellular homeostasis, leading to the inability to differentiate properly. Bisulfite genomic sequencing revealed that this transient knockdown caused a genome-wide alteration of the DNA methylation remodeling that takes place during the early steps of differentiation, suggesting that the phenotype we observed might be due to the dysregulation of some of the mechanisms involved in regulation of ESC exit from pluripotency. By gene expression analysis, we identified two molecules that could have a role in the altered genome-wide methylation profile: the long noncoding RNA ephemeron, whose rapid upregulation is crucial for the transition of ESCs into epiblast, and the methyltransferase-like protein Dnmt3l, which, during the embryo development, cooperates with Dnmt3a and Dnmt3b to contribute to the de novo DNA methylation that governs early steps of ESC differentiation. These data suggest a new role for YAP in the governance of the epigenetic dynamics of exit from pluripotency. American Society for Biochemistry and Molecular Biology 2020-12-06 /pmc/articles/PMC7948423/ /pubmed/33268382 http://dx.doi.org/10.1074/jbc.RA120.015896 Text en © 2020 The Authors https://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 Research Article
Passaro, Fabiana
De Martino, Ilaria
Zambelli, Federico
Di Benedetto, Giorgia
Barbato, Matteo
D’Erchia, Anna Maria
Manzari, Caterina
Pesole, Graziano
Mutarelli, Margherita
Cacchiarelli, Davide
Antonini, Dario
Parisi, Silvia
Russo, Tommaso
YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation
title YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation
title_full YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation
title_fullStr YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation
title_full_unstemmed YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation
title_short YAP contributes to DNA methylation remodeling upon mouse embryonic stem cell differentiation
title_sort yap contributes to dna methylation remodeling upon mouse embryonic stem cell differentiation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948423/
https://www.ncbi.nlm.nih.gov/pubmed/33268382
http://dx.doi.org/10.1074/jbc.RA120.015896
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