Xbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction
Heart failure with preserved ejection fraction (HFpEF) is a global, major health issue for which no effective therapies are available. Here, the authors discover that the interplay between two transcription factors, Xbp1s and FoxO1, is critical for metabolic adaptation and lipid handling in HFpEF-st...
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Nature Portfolio
2021
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oai:doaj.org-article:5e96ad72a7fc4e428e30cd13deb2825b2021-12-02T16:30:42ZXbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction10.1038/s41467-021-21931-92041-1723https://doaj.org/article/5e96ad72a7fc4e428e30cd13deb2825b2021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21931-9https://doaj.org/toc/2041-1723Heart failure with preserved ejection fraction (HFpEF) is a global, major health issue for which no effective therapies are available. Here, the authors discover that the interplay between two transcription factors, Xbp1s and FoxO1, is critical for metabolic adaptation and lipid handling in HFpEF-stressed cardiomyocytes.Gabriele G. SchiattarellaFrancisco AltamiranoSoo Young KimDan TongAnwarul FerdousHande PiristineSubhajit DasguptaXuliang WangKristin M. FrenchElisa VillalobosStephen B. SpurginMaayan WaldmanNan JiangHerman I. MayTheodore M. HillYuxuan LuoHeesoo YooVlad G. ZahaSergio LavanderoThomas G. GilletteJoseph A. HillNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021) |
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Science Q Gabriele G. Schiattarella Francisco Altamirano Soo Young Kim Dan Tong Anwarul Ferdous Hande Piristine Subhajit Dasgupta Xuliang Wang Kristin M. French Elisa Villalobos Stephen B. Spurgin Maayan Waldman Nan Jiang Herman I. May Theodore M. Hill Yuxuan Luo Heesoo Yoo Vlad G. Zaha Sergio Lavandero Thomas G. Gillette Joseph A. Hill Xbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction |
description |
Heart failure with preserved ejection fraction (HFpEF) is a global, major health issue for which no effective therapies are available. Here, the authors discover that the interplay between two transcription factors, Xbp1s and FoxO1, is critical for metabolic adaptation and lipid handling in HFpEF-stressed cardiomyocytes. |
format |
article |
author |
Gabriele G. Schiattarella Francisco Altamirano Soo Young Kim Dan Tong Anwarul Ferdous Hande Piristine Subhajit Dasgupta Xuliang Wang Kristin M. French Elisa Villalobos Stephen B. Spurgin Maayan Waldman Nan Jiang Herman I. May Theodore M. Hill Yuxuan Luo Heesoo Yoo Vlad G. Zaha Sergio Lavandero Thomas G. Gillette Joseph A. Hill |
author_facet |
Gabriele G. Schiattarella Francisco Altamirano Soo Young Kim Dan Tong Anwarul Ferdous Hande Piristine Subhajit Dasgupta Xuliang Wang Kristin M. French Elisa Villalobos Stephen B. Spurgin Maayan Waldman Nan Jiang Herman I. May Theodore M. Hill Yuxuan Luo Heesoo Yoo Vlad G. Zaha Sergio Lavandero Thomas G. Gillette Joseph A. Hill |
author_sort |
Gabriele G. Schiattarella |
title |
Xbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction |
title_short |
Xbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction |
title_full |
Xbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction |
title_fullStr |
Xbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction |
title_full_unstemmed |
Xbp1s-FoxO1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction |
title_sort |
xbp1s-foxo1 axis governs lipid accumulation and contractile performance in heart failure with preserved ejection fraction |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/5e96ad72a7fc4e428e30cd13deb2825b |
work_keys_str_mv |
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