Genomic imprinting in mouse blastocysts is predominantly associated with H3K27me3

In most mammals, imprinted genes contain epigenetic marks that differ in each parental genome and control their parent-of-origin-specific expression. Here, the authors map imprinted genes in mouse preimplantation embryos and find that imprinted gene expression in blastocysts is mainly dependent on P...

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Autores principales: Laura Santini, Florian Halbritter, Fabian Titz-Teixeira, Toru Suzuki, Maki Asami, Xiaoyan Ma, Julia Ramesmayer, Andreas Lackner, Nick Warr, Florian Pauler, Simon Hippenmeyer, Ernest Laue, Matthias Farlik, Christoph Bock, Andreas Beyer, Anthony C. F. Perry, Martin Leeb
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/80a4a9c1e8f242dab49a92d2bed3b3ac
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spelling oai:doaj.org-article:80a4a9c1e8f242dab49a92d2bed3b3ac2021-12-02T17:45:09ZGenomic imprinting in mouse blastocysts is predominantly associated with H3K27me310.1038/s41467-021-23510-42041-1723https://doaj.org/article/80a4a9c1e8f242dab49a92d2bed3b3ac2021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23510-4https://doaj.org/toc/2041-1723In most mammals, imprinted genes contain epigenetic marks that differ in each parental genome and control their parent-of-origin-specific expression. Here, the authors map imprinted genes in mouse preimplantation embryos and find that imprinted gene expression in blastocysts is mainly dependent on Polycomb-mediated H3K27me3-associated gene silencing.Laura SantiniFlorian HalbritterFabian Titz-TeixeiraToru SuzukiMaki AsamiXiaoyan MaJulia RamesmayerAndreas LacknerNick WarrFlorian PaulerSimon HippenmeyerErnest LaueMatthias FarlikChristoph BockAndreas BeyerAnthony C. F. PerryMartin LeebNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Laura Santini
Florian Halbritter
Fabian Titz-Teixeira
Toru Suzuki
Maki Asami
Xiaoyan Ma
Julia Ramesmayer
Andreas Lackner
Nick Warr
Florian Pauler
Simon Hippenmeyer
Ernest Laue
Matthias Farlik
Christoph Bock
Andreas Beyer
Anthony C. F. Perry
Martin Leeb
Genomic imprinting in mouse blastocysts is predominantly associated with H3K27me3
description In most mammals, imprinted genes contain epigenetic marks that differ in each parental genome and control their parent-of-origin-specific expression. Here, the authors map imprinted genes in mouse preimplantation embryos and find that imprinted gene expression in blastocysts is mainly dependent on Polycomb-mediated H3K27me3-associated gene silencing.
format article
author Laura Santini
Florian Halbritter
Fabian Titz-Teixeira
Toru Suzuki
Maki Asami
Xiaoyan Ma
Julia Ramesmayer
Andreas Lackner
Nick Warr
Florian Pauler
Simon Hippenmeyer
Ernest Laue
Matthias Farlik
Christoph Bock
Andreas Beyer
Anthony C. F. Perry
Martin Leeb
author_facet Laura Santini
Florian Halbritter
Fabian Titz-Teixeira
Toru Suzuki
Maki Asami
Xiaoyan Ma
Julia Ramesmayer
Andreas Lackner
Nick Warr
Florian Pauler
Simon Hippenmeyer
Ernest Laue
Matthias Farlik
Christoph Bock
Andreas Beyer
Anthony C. F. Perry
Martin Leeb
author_sort Laura Santini
title Genomic imprinting in mouse blastocysts is predominantly associated with H3K27me3
title_short Genomic imprinting in mouse blastocysts is predominantly associated with H3K27me3
title_full Genomic imprinting in mouse blastocysts is predominantly associated with H3K27me3
title_fullStr Genomic imprinting in mouse blastocysts is predominantly associated with H3K27me3
title_full_unstemmed Genomic imprinting in mouse blastocysts is predominantly associated with H3K27me3
title_sort genomic imprinting in mouse blastocysts is predominantly associated with h3k27me3
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/80a4a9c1e8f242dab49a92d2bed3b3ac
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