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FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway

Owing to the avascular environment within ovarian follicles, granulosa cells (GCs) are believed to live in a hypoxic niche. Follicle-stimulating hormone (FSH)-mediated steroidogenesis is crucial for normal growth and maturation of ovarian follicles, but it remains unclear how FSH stimulates estradio...

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Autores principales: Wu, Gang, Li, Chengyu, Tao, Jingli, Liu, Zhaojun, Li, Xiaoxuan, Zang, Ziyu, Fu, Chen, Wei, Jiayuan, Yang, Yaxing, Zhu, Qian, Zhang, Jia-Qing, Shen, Ming, Liu, Honglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9036125/
https://www.ncbi.nlm.nih.gov/pubmed/35300979
http://dx.doi.org/10.1016/j.jbc.2022.101830
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author Wu, Gang
Li, Chengyu
Tao, Jingli
Liu, Zhaojun
Li, Xiaoxuan
Zang, Ziyu
Fu, Chen
Wei, Jiayuan
Yang, Yaxing
Zhu, Qian
Zhang, Jia-Qing
Shen, Ming
Liu, Honglin
author_facet Wu, Gang
Li, Chengyu
Tao, Jingli
Liu, Zhaojun
Li, Xiaoxuan
Zang, Ziyu
Fu, Chen
Wei, Jiayuan
Yang, Yaxing
Zhu, Qian
Zhang, Jia-Qing
Shen, Ming
Liu, Honglin
author_sort Wu, Gang
collection PubMed
description Owing to the avascular environment within ovarian follicles, granulosa cells (GCs) are believed to live in a hypoxic niche. Follicle-stimulating hormone (FSH)-mediated steroidogenesis is crucial for normal growth and maturation of ovarian follicles, but it remains unclear how FSH stimulates estradiol (E2) synthesis under hypoxic conditions. Here, we aimed to explore whether FSH affects the ATP production required for estrogen synthesis from the perspective of glucose metabolism. It was observed that the levels of both E2 and HIF-1α were markedly increased in a dose-dependent manner in mouse ovarian GCs after the injection of FSH in vivo, indicating that hypoxia/HIF-1α may be relevant to FSH-induced E2 synthesis. By treating hypoxic GCs with FSH in vitro, we further revealed that the activation of the AMP-activated protein kinase (AMPK)–GLUT1 pathway, which in turn stimulates ATP generation, may be essential for FSH-mediated E2 production during hypoxia. In contrast, inhibition of AMPK or GLUT1 with siRNAs/antagonist both repressed glycolysis, ATP production, and E2 synthesis despite FSH treatment. Moreover, blocking HIF-1α activity using siRNAs/PX-478 suppressed AMPK activation, GLUT1 expression, and E2 levels in FSH-treated GCs. Finally, the in vitro findings were verified in vivo, which showed markedly increased AMPK activity, GLUT1 expression, glycolytic flux, ATP levels, and E2 concentrations in ovarian GCs following FSH injection. Taken together, these findings uncovered a novel mechanism for FSH-regulating E2 synthesis in hypoxic GCs by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 pathway.
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spelling pubmed-90361252022-04-28 FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway Wu, Gang Li, Chengyu Tao, Jingli Liu, Zhaojun Li, Xiaoxuan Zang, Ziyu Fu, Chen Wei, Jiayuan Yang, Yaxing Zhu, Qian Zhang, Jia-Qing Shen, Ming Liu, Honglin J Biol Chem RESEARCH ARTICLE COLLECTION: Cell Biology (2022) Owing to the avascular environment within ovarian follicles, granulosa cells (GCs) are believed to live in a hypoxic niche. Follicle-stimulating hormone (FSH)-mediated steroidogenesis is crucial for normal growth and maturation of ovarian follicles, but it remains unclear how FSH stimulates estradiol (E2) synthesis under hypoxic conditions. Here, we aimed to explore whether FSH affects the ATP production required for estrogen synthesis from the perspective of glucose metabolism. It was observed that the levels of both E2 and HIF-1α were markedly increased in a dose-dependent manner in mouse ovarian GCs after the injection of FSH in vivo, indicating that hypoxia/HIF-1α may be relevant to FSH-induced E2 synthesis. By treating hypoxic GCs with FSH in vitro, we further revealed that the activation of the AMP-activated protein kinase (AMPK)–GLUT1 pathway, which in turn stimulates ATP generation, may be essential for FSH-mediated E2 production during hypoxia. In contrast, inhibition of AMPK or GLUT1 with siRNAs/antagonist both repressed glycolysis, ATP production, and E2 synthesis despite FSH treatment. Moreover, blocking HIF-1α activity using siRNAs/PX-478 suppressed AMPK activation, GLUT1 expression, and E2 levels in FSH-treated GCs. Finally, the in vitro findings were verified in vivo, which showed markedly increased AMPK activity, GLUT1 expression, glycolytic flux, ATP levels, and E2 concentrations in ovarian GCs following FSH injection. Taken together, these findings uncovered a novel mechanism for FSH-regulating E2 synthesis in hypoxic GCs by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 pathway. American Society for Biochemistry and Molecular Biology 2022-03-15 /pmc/articles/PMC9036125/ /pubmed/35300979 http://dx.doi.org/10.1016/j.jbc.2022.101830 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle RESEARCH ARTICLE COLLECTION: Cell Biology (2022)
Wu, Gang
Li, Chengyu
Tao, Jingli
Liu, Zhaojun
Li, Xiaoxuan
Zang, Ziyu
Fu, Chen
Wei, Jiayuan
Yang, Yaxing
Zhu, Qian
Zhang, Jia-Qing
Shen, Ming
Liu, Honglin
FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway
title FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway
title_full FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway
title_fullStr FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway
title_full_unstemmed FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway
title_short FSH mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the HIF-1α–AMPK–GLUT1 signaling pathway
title_sort fsh mediates estradiol synthesis in hypoxic granulosa cells by activating glycolytic metabolism through the hif-1α–ampk–glut1 signaling pathway
topic RESEARCH ARTICLE COLLECTION: Cell Biology (2022)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9036125/
https://www.ncbi.nlm.nih.gov/pubmed/35300979
http://dx.doi.org/10.1016/j.jbc.2022.101830
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