Loss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas

Somatic cell nuclear transfer (SCNT) frequently results in abnormal placenta development in cloned mice. Here the authors show that loss of histone methylation (H3K27me3) imprinting in clustered Sfmbt2 miRNAs contributes to SCNT placenta defect.

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Autores principales: Kimiko Inoue, Narumi Ogonuki, Satoshi Kamimura, Hiroki Inoue, Shogo Matoba, Michiko Hirose, Arata Honda, Kento Miura, Masashi Hada, Ayumi Hasegawa, Naomi Watanabe, Yukiko Dodo, Keiji Mochida, Atsuo Ogura
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/9a90abcae67c4e6d8be26b81b3d9af93
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spelling oai:doaj.org-article:9a90abcae67c4e6d8be26b81b3d9af932021-12-02T14:40:29ZLoss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas10.1038/s41467-020-16044-82041-1723https://doaj.org/article/9a90abcae67c4e6d8be26b81b3d9af932020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16044-8https://doaj.org/toc/2041-1723Somatic cell nuclear transfer (SCNT) frequently results in abnormal placenta development in cloned mice. Here the authors show that loss of histone methylation (H3K27me3) imprinting in clustered Sfmbt2 miRNAs contributes to SCNT placenta defect.Kimiko InoueNarumi OgonukiSatoshi KamimuraHiroki InoueShogo MatobaMichiko HiroseArata HondaKento MiuraMasashi HadaAyumi HasegawaNaomi WatanabeYukiko DodoKeiji MochidaAtsuo OguraNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kimiko Inoue
Narumi Ogonuki
Satoshi Kamimura
Hiroki Inoue
Shogo Matoba
Michiko Hirose
Arata Honda
Kento Miura
Masashi Hada
Ayumi Hasegawa
Naomi Watanabe
Yukiko Dodo
Keiji Mochida
Atsuo Ogura
Loss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas
description Somatic cell nuclear transfer (SCNT) frequently results in abnormal placenta development in cloned mice. Here the authors show that loss of histone methylation (H3K27me3) imprinting in clustered Sfmbt2 miRNAs contributes to SCNT placenta defect.
format article
author Kimiko Inoue
Narumi Ogonuki
Satoshi Kamimura
Hiroki Inoue
Shogo Matoba
Michiko Hirose
Arata Honda
Kento Miura
Masashi Hada
Ayumi Hasegawa
Naomi Watanabe
Yukiko Dodo
Keiji Mochida
Atsuo Ogura
author_facet Kimiko Inoue
Narumi Ogonuki
Satoshi Kamimura
Hiroki Inoue
Shogo Matoba
Michiko Hirose
Arata Honda
Kento Miura
Masashi Hada
Ayumi Hasegawa
Naomi Watanabe
Yukiko Dodo
Keiji Mochida
Atsuo Ogura
author_sort Kimiko Inoue
title Loss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas
title_short Loss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas
title_full Loss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas
title_fullStr Loss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas
title_full_unstemmed Loss of H3K27me3 imprinting in the Sfmbt2 miRNA cluster causes enlargement of cloned mouse placentas
title_sort loss of h3k27me3 imprinting in the sfmbt2 mirna cluster causes enlargement of cloned mouse placentas
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/9a90abcae67c4e6d8be26b81b3d9af93
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