Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan
Activation of autophagy, via the transcription factor TFEB, is a promising strategy to treat metabolic diseases. Here, the authors report three novel classes of small molecules that promote TFEB nuclear translocation, and provide evidence for the therapeutic efficacy of these compounds in mice and w...
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Nature Portfolio
2017
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oai:doaj.org-article:81b35dd22d994409b4c733145887247d2021-12-02T17:01:19ZSmall-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan10.1038/s41467-017-02332-32041-1723https://doaj.org/article/81b35dd22d994409b4c733145887247d2017-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02332-3https://doaj.org/toc/2041-1723Activation of autophagy, via the transcription factor TFEB, is a promising strategy to treat metabolic diseases. Here, the authors report three novel classes of small molecules that promote TFEB nuclear translocation, and provide evidence for the therapeutic efficacy of these compounds in mice and worms.Chensu WangHanspeter NiederstrasserPeter M. DouglasRueyling LinJuan JaramilloYang LiNathaniel W. OswaldAnwu ZhouElizabeth A. McMillanSaurabh MendirattaZhaohui WangTian ZhaoZhiqaing LinMin LuoGang HuangRolf A. BrekkenBruce A. PosnerJohn B. MacMillanJinming GaoMichael A. WhiteNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017) |
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DOAJ |
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EN |
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Science Q |
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Science Q Chensu Wang Hanspeter Niederstrasser Peter M. Douglas Rueyling Lin Juan Jaramillo Yang Li Nathaniel W. Oswald Anwu Zhou Elizabeth A. McMillan Saurabh Mendiratta Zhaohui Wang Tian Zhao Zhiqaing Lin Min Luo Gang Huang Rolf A. Brekken Bruce A. Posner John B. MacMillan Jinming Gao Michael A. White Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan |
description |
Activation of autophagy, via the transcription factor TFEB, is a promising strategy to treat metabolic diseases. Here, the authors report three novel classes of small molecules that promote TFEB nuclear translocation, and provide evidence for the therapeutic efficacy of these compounds in mice and worms. |
format |
article |
author |
Chensu Wang Hanspeter Niederstrasser Peter M. Douglas Rueyling Lin Juan Jaramillo Yang Li Nathaniel W. Oswald Anwu Zhou Elizabeth A. McMillan Saurabh Mendiratta Zhaohui Wang Tian Zhao Zhiqaing Lin Min Luo Gang Huang Rolf A. Brekken Bruce A. Posner John B. MacMillan Jinming Gao Michael A. White |
author_facet |
Chensu Wang Hanspeter Niederstrasser Peter M. Douglas Rueyling Lin Juan Jaramillo Yang Li Nathaniel W. Oswald Anwu Zhou Elizabeth A. McMillan Saurabh Mendiratta Zhaohui Wang Tian Zhao Zhiqaing Lin Min Luo Gang Huang Rolf A. Brekken Bruce A. Posner John B. MacMillan Jinming Gao Michael A. White |
author_sort |
Chensu Wang |
title |
Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan |
title_short |
Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan |
title_full |
Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan |
title_fullStr |
Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan |
title_full_unstemmed |
Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan |
title_sort |
small-molecule tfeb pathway agonists that ameliorate metabolic syndrome in mice and extend c. elegans lifespan |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/81b35dd22d994409b4c733145887247d |
work_keys_str_mv |
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