Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16

Visceral adiposity is associated with metabolic diseases, whereas subcutaneous adiposity is comparatively benign. Here, the authors report that subcutaneous adipose tissue adopts visceral-like characteristics in response to prolonged fasting, and show this is mediated by miR-149-3p and its target, P...

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Autores principales: Hanying Ding, Shasha Zheng, Daniel Garcia-Ruiz, Dongxia Hou, Zhe Wei, Zhicong Liao, Limin Li, Yujing Zhang, Xiao Han, Ke Zen, Chen-Yu Zhang, Jing Li, Xiaohong Jiang
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/f877f6cf92a7471b819414666df8c0fe
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spelling oai:doaj.org-article:f877f6cf92a7471b819414666df8c0fe2021-12-02T16:57:01ZFasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM1610.1038/ncomms115332041-1723https://doaj.org/article/f877f6cf92a7471b819414666df8c0fe2016-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms11533https://doaj.org/toc/2041-1723Visceral adiposity is associated with metabolic diseases, whereas subcutaneous adiposity is comparatively benign. Here, the authors report that subcutaneous adipose tissue adopts visceral-like characteristics in response to prolonged fasting, and show this is mediated by miR-149-3p and its target, PRDM16.Hanying DingShasha ZhengDaniel Garcia-RuizDongxia HouZhe WeiZhicong LiaoLimin LiYujing ZhangXiao HanKe ZenChen-Yu ZhangJing LiXiaohong JiangNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-17 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hanying Ding
Shasha Zheng
Daniel Garcia-Ruiz
Dongxia Hou
Zhe Wei
Zhicong Liao
Limin Li
Yujing Zhang
Xiao Han
Ke Zen
Chen-Yu Zhang
Jing Li
Xiaohong Jiang
Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16
description Visceral adiposity is associated with metabolic diseases, whereas subcutaneous adiposity is comparatively benign. Here, the authors report that subcutaneous adipose tissue adopts visceral-like characteristics in response to prolonged fasting, and show this is mediated by miR-149-3p and its target, PRDM16.
format article
author Hanying Ding
Shasha Zheng
Daniel Garcia-Ruiz
Dongxia Hou
Zhe Wei
Zhicong Liao
Limin Li
Yujing Zhang
Xiao Han
Ke Zen
Chen-Yu Zhang
Jing Li
Xiaohong Jiang
author_facet Hanying Ding
Shasha Zheng
Daniel Garcia-Ruiz
Dongxia Hou
Zhe Wei
Zhicong Liao
Limin Li
Yujing Zhang
Xiao Han
Ke Zen
Chen-Yu Zhang
Jing Li
Xiaohong Jiang
author_sort Hanying Ding
title Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16
title_short Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16
title_full Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16
title_fullStr Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16
title_full_unstemmed Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16
title_sort fasting induces a subcutaneous-to-visceral fat switch mediated by microrna-149-3p and suppression of prdm16
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/f877f6cf92a7471b819414666df8c0fe
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