Epigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood

FGF21 exerts beneficial metabolic effects on multiple tissues. Here the authors show that the Fgf21 gene is demethylated during the postnatal suckling period, creating an epigenetic memory that determines the responsiveness of the Fgf21 gene to inducers such as PPARα activators or fasting in adultho...

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Autores principales: Xunmei Yuan, Kazutaka Tsujimoto, Koshi Hashimoto, Kenichi Kawahori, Nozomi Hanzawa, Miho Hamaguchi, Takami Seki, Makiko Nawa, Tatsuya Ehara, Yohei Kitamura, Izuho Hatada, Morichika Konishi, Nobuyuki Itoh, Yoshimi Nakagawa, Hitoshi Shimano, Takako Takai-Igarashi, Yasutomi Kamei, Yoshihiro Ogawa
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/c62f55c79e3144f582a03839a050d571
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spelling oai:doaj.org-article:c62f55c79e3144f582a03839a050d5712021-12-02T16:56:39ZEpigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood10.1038/s41467-018-03038-w2041-1723https://doaj.org/article/c62f55c79e3144f582a03839a050d5712018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03038-whttps://doaj.org/toc/2041-1723FGF21 exerts beneficial metabolic effects on multiple tissues. Here the authors show that the Fgf21 gene is demethylated during the postnatal suckling period, creating an epigenetic memory that determines the responsiveness of the Fgf21 gene to inducers such as PPARα activators or fasting in adulthood.Xunmei YuanKazutaka TsujimotoKoshi HashimotoKenichi KawahoriNozomi HanzawaMiho HamaguchiTakami SekiMakiko NawaTatsuya EharaYohei KitamuraIzuho HatadaMorichika KonishiNobuyuki ItohYoshimi NakagawaHitoshi ShimanoTakako Takai-IgarashiYasutomi KameiYoshihiro OgawaNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-16 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xunmei Yuan
Kazutaka Tsujimoto
Koshi Hashimoto
Kenichi Kawahori
Nozomi Hanzawa
Miho Hamaguchi
Takami Seki
Makiko Nawa
Tatsuya Ehara
Yohei Kitamura
Izuho Hatada
Morichika Konishi
Nobuyuki Itoh
Yoshimi Nakagawa
Hitoshi Shimano
Takako Takai-Igarashi
Yasutomi Kamei
Yoshihiro Ogawa
Epigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood
description FGF21 exerts beneficial metabolic effects on multiple tissues. Here the authors show that the Fgf21 gene is demethylated during the postnatal suckling period, creating an epigenetic memory that determines the responsiveness of the Fgf21 gene to inducers such as PPARα activators or fasting in adulthood.
format article
author Xunmei Yuan
Kazutaka Tsujimoto
Koshi Hashimoto
Kenichi Kawahori
Nozomi Hanzawa
Miho Hamaguchi
Takami Seki
Makiko Nawa
Tatsuya Ehara
Yohei Kitamura
Izuho Hatada
Morichika Konishi
Nobuyuki Itoh
Yoshimi Nakagawa
Hitoshi Shimano
Takako Takai-Igarashi
Yasutomi Kamei
Yoshihiro Ogawa
author_facet Xunmei Yuan
Kazutaka Tsujimoto
Koshi Hashimoto
Kenichi Kawahori
Nozomi Hanzawa
Miho Hamaguchi
Takami Seki
Makiko Nawa
Tatsuya Ehara
Yohei Kitamura
Izuho Hatada
Morichika Konishi
Nobuyuki Itoh
Yoshimi Nakagawa
Hitoshi Shimano
Takako Takai-Igarashi
Yasutomi Kamei
Yoshihiro Ogawa
author_sort Xunmei Yuan
title Epigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood
title_short Epigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood
title_full Epigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood
title_fullStr Epigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood
title_full_unstemmed Epigenetic modulation of Fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood
title_sort epigenetic modulation of fgf21 in the perinatal mouse liver ameliorates diet-induced obesity in adulthood
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/c62f55c79e3144f582a03839a050d571
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