Histone variant H2A.Z regulates zygotic genome activation

During embryogenesis, the genome becomes transcriptionally active in a process known as zygotic genome activation (ZGA); how ZGA is initiated is still an open question. Here the authors show histone variant H2A.Z deposition precedes RNA polymerase II binding on chromatin, before ZGA. H2A.Z loss caus...

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Autores principales: Dafne Ibarra-Morales, Michael Rauer, Piergiuseppe Quarato, Leily Rabbani, Fides Zenk, Mariana Schulte-Sasse, Francesco Cardamone, Alejandro Gomez-Auli, Germano Cecere, Nicola Iovino
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/0266ce08d5fc4cb9bd1de6a83d2425e9
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spelling oai:doaj.org-article:0266ce08d5fc4cb9bd1de6a83d2425e92021-12-05T12:22:34ZHistone variant H2A.Z regulates zygotic genome activation10.1038/s41467-021-27125-72041-1723https://doaj.org/article/0266ce08d5fc4cb9bd1de6a83d2425e92021-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-27125-7https://doaj.org/toc/2041-1723During embryogenesis, the genome becomes transcriptionally active in a process known as zygotic genome activation (ZGA); how ZGA is initiated is still an open question. Here the authors show histone variant H2A.Z deposition precedes RNA polymerase II binding on chromatin, before ZGA. H2A.Z loss causes transcriptional downregulation of ZGA genes and leads to changes in the 3D genome organization.Dafne Ibarra-MoralesMichael RauerPiergiuseppe QuaratoLeily RabbaniFides ZenkMariana Schulte-SasseFrancesco CardamoneAlejandro Gomez-AuliGermano CecereNicola IovinoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Dafne Ibarra-Morales
Michael Rauer
Piergiuseppe Quarato
Leily Rabbani
Fides Zenk
Mariana Schulte-Sasse
Francesco Cardamone
Alejandro Gomez-Auli
Germano Cecere
Nicola Iovino
Histone variant H2A.Z regulates zygotic genome activation
description During embryogenesis, the genome becomes transcriptionally active in a process known as zygotic genome activation (ZGA); how ZGA is initiated is still an open question. Here the authors show histone variant H2A.Z deposition precedes RNA polymerase II binding on chromatin, before ZGA. H2A.Z loss causes transcriptional downregulation of ZGA genes and leads to changes in the 3D genome organization.
format article
author Dafne Ibarra-Morales
Michael Rauer
Piergiuseppe Quarato
Leily Rabbani
Fides Zenk
Mariana Schulte-Sasse
Francesco Cardamone
Alejandro Gomez-Auli
Germano Cecere
Nicola Iovino
author_facet Dafne Ibarra-Morales
Michael Rauer
Piergiuseppe Quarato
Leily Rabbani
Fides Zenk
Mariana Schulte-Sasse
Francesco Cardamone
Alejandro Gomez-Auli
Germano Cecere
Nicola Iovino
author_sort Dafne Ibarra-Morales
title Histone variant H2A.Z regulates zygotic genome activation
title_short Histone variant H2A.Z regulates zygotic genome activation
title_full Histone variant H2A.Z regulates zygotic genome activation
title_fullStr Histone variant H2A.Z regulates zygotic genome activation
title_full_unstemmed Histone variant H2A.Z regulates zygotic genome activation
title_sort histone variant h2a.z regulates zygotic genome activation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/0266ce08d5fc4cb9bd1de6a83d2425e9
work_keys_str_mv AT dafneibarramorales histonevarianth2azregulateszygoticgenomeactivation
AT michaelrauer histonevarianth2azregulateszygoticgenomeactivation
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AT fideszenk histonevarianth2azregulateszygoticgenomeactivation
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AT francescocardamone histonevarianth2azregulateszygoticgenomeactivation
AT alejandrogomezauli histonevarianth2azregulateszygoticgenomeactivation
AT germanocecere histonevarianth2azregulateszygoticgenomeactivation
AT nicolaiovino histonevarianth2azregulateszygoticgenomeactivation
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