PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis
Increased glycolysis and inflammatory responses have been observed in endothelial cells exposed to disturbed flow. However, the role of endothelial glycolysis in atherosclerosis is unclear. Here the authors unveil a protective role for glycolysis by showing that endothelial deletion of Prkaa1 accele...
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2018
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oai:doaj.org-article:befd6b37207d47fb8d266efd4020896c2021-12-02T15:33:57ZPRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis10.1038/s41467-018-07132-x2041-1723https://doaj.org/article/befd6b37207d47fb8d266efd4020896c2018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07132-xhttps://doaj.org/toc/2041-1723Increased glycolysis and inflammatory responses have been observed in endothelial cells exposed to disturbed flow. However, the role of endothelial glycolysis in atherosclerosis is unclear. Here the authors unveil a protective role for glycolysis by showing that endothelial deletion of Prkaa1 accelerates atherosclerosis in hyperlipidemic mice through a reduction of glycolytic metabolism.Qiuhua YangJiean XuQian MaZhiping LiuVaradarajan SudhaharYapeng CaoLina WangXianqiu ZengYaqi ZhouMin ZhangYiming XuYong WangNeal L. WeintraubChunxiang ZhangTohru FukaiChaodong WuLei HuangZhen HanTao WangDavid J. FultonMei HongYuqing HuoNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-17 (2018) |
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Science Q Qiuhua Yang Jiean Xu Qian Ma Zhiping Liu Varadarajan Sudhahar Yapeng Cao Lina Wang Xianqiu Zeng Yaqi Zhou Min Zhang Yiming Xu Yong Wang Neal L. Weintraub Chunxiang Zhang Tohru Fukai Chaodong Wu Lei Huang Zhen Han Tao Wang David J. Fulton Mei Hong Yuqing Huo PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis |
description |
Increased glycolysis and inflammatory responses have been observed in endothelial cells exposed to disturbed flow. However, the role of endothelial glycolysis in atherosclerosis is unclear. Here the authors unveil a protective role for glycolysis by showing that endothelial deletion of Prkaa1 accelerates atherosclerosis in hyperlipidemic mice through a reduction of glycolytic metabolism. |
format |
article |
author |
Qiuhua Yang Jiean Xu Qian Ma Zhiping Liu Varadarajan Sudhahar Yapeng Cao Lina Wang Xianqiu Zeng Yaqi Zhou Min Zhang Yiming Xu Yong Wang Neal L. Weintraub Chunxiang Zhang Tohru Fukai Chaodong Wu Lei Huang Zhen Han Tao Wang David J. Fulton Mei Hong Yuqing Huo |
author_facet |
Qiuhua Yang Jiean Xu Qian Ma Zhiping Liu Varadarajan Sudhahar Yapeng Cao Lina Wang Xianqiu Zeng Yaqi Zhou Min Zhang Yiming Xu Yong Wang Neal L. Weintraub Chunxiang Zhang Tohru Fukai Chaodong Wu Lei Huang Zhen Han Tao Wang David J. Fulton Mei Hong Yuqing Huo |
author_sort |
Qiuhua Yang |
title |
PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis |
title_short |
PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis |
title_full |
PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis |
title_fullStr |
PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis |
title_full_unstemmed |
PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis |
title_sort |
prkaa1/ampkα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/befd6b37207d47fb8d266efd4020896c |
work_keys_str_mv |
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