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Follicle-Stimulating Hormone Induces Lipid Droplets via Gαi/o and β-Arrestin in an Endometrial Cancer Cell Line
Niamh S Sayers1, Priyanka Anujan1, Henry N Yu2
1Department of Metabolism, Digestion and Reproduction, Institute of Reproductive and Developmental Biology, Imperial College London, London, United Kingdom.
Abstract:
Follicle-stimulating hormone (FSH) and its G protein-coupled receptor, FSHR, represents a paradigm for receptor signaling systems that activate multiple and complex pathways. Classically, FSHR activates Gαs to increase intracellular levels of cAMP, but its ability to activate other G proteins, and β-arrestin-mediated signaling is well documented in many different cell systems. The pleiotropic signal capacity of FSHR offers a mechanism for how FSH drives multiple and dynamic downstream functions in both gonadal and non-gonadal cell types, including distinct diseases, and how signal bias may be achieved at a pharmacological and cell system-specific manner. In this study, we identify an additional mechanism of FSH-mediated signaling and downstream function in the endometrial adenocarcinoma Ishikawa cell line. While FSH did not induce increases in cAMP levels, this hormone potently activated pertussis toxin sensitive Gαi/o signaling. A selective allosteric FSHR ligand, B3, also activated Gαi/o signaling in these cells, supporting a role for receptor-mediated activation despite the low levels of FSHR mRNA. The low expression levels may attribute to the lack of Gαs/cAMP signaling as increasing FSHR expression resulted in FSH-mediated activation of the Gαs pathway. Unlike prior reports for FSH-mediated Gαs/cAMP signaling, FSH-mediated Gαi/o signaling was not affected by inhibition of dynamin-dependent receptor internalization. While chronic FSH did not alter cell viability, FSH was able to increase lipid droplet size. The β-arrestins are key adaptor proteins known to regulate FSHR signaling. Indeed, a rapid, FSH-dependent increase in interactions between β-arrestin1 and Gαi1 was observed via NanoBiT complementation in Ishikawa cells. Furthermore, both inhibition of Gαi/o signaling and siRNA knockdown of β-arrestin 1/2 significantly reduced FSH-induced lipid droplet accumulation, implying a role for a Gαi/o/β-arrestin complex in FSH functions in this cell type. As FSH/FSHR has been implicated in distinct hormone-dependent cancers, including endometrial cancer, analysis of the cancer genome database from 575 human endometrial adenocarcinoma tumors revealed that a subpopulation of samples expressed FSHR. Overall, this study highlights a novel mechanism for FSHR signal pleiotropy that may be exploited for future personalized therapeutic approaches.
Insights
Follicle-stimulating hormone (FSH) activates novel Gαi/o and β-arrestin signaling pathways in endometrial cancer cells, independent of cAMP. This discovery offers new therapeutic targets for hormone-dependent cancers.
Area of Science:
- Endocrinology
- Molecular Cell Biology
- Cancer Biology
Background:
- Follicle-stimulating hormone (FSH) and its receptor (FSHR) activate complex signaling pathways.
- FSHR classically signals via Gαs to increase cAMP, but also activates other G proteins and β-arrestins.
- FSHR's pleiotropic signaling drives diverse functions in gonadal and non-gonadal cells, relevant to diseases.
Purpose of the Study:
- To identify novel FSH-mediated signaling mechanisms in endometrial adenocarcinoma cells.
- To investigate the role of Gαi/o and β-arrestin pathways in FSHR signaling in Ishikawa cells.
- To explore the therapeutic potential of FSHR signaling in endometrial cancer.
Main Methods:
- Utilized Ishikawa cells to study FSH and selective FSHR ligand B3 effects.
- Assessed Gαi/o activation using pertussis toxin and Gαs/cAMP levels.
- Investigated FSHR expression, receptor internalization, β-arrestin interactions (NanoBiT), and lipid droplet accumulation.
- Analyzed FSHR expression in human endometrial adenocarcinoma tumor data.
Main Results:
- FSH activated Gαi/o signaling but not cAMP in Ishikawa cells, even with low FSHR mRNA.
- Increased FSHR expression restored FSH-mediated Gαs/cAMP signaling.
- FSH-mediated Gαi/o signaling was independent of receptor internalization.
- FSH increased lipid droplet size, dependent on Gαi/o and β-arrestin 1/2.
- FSHR was detected in a subpopulation of endometrial adenocarcinoma tumors.
Conclusions:
- FSHR exhibits novel Gαi/o and β-arrestin signaling in endometrial cancer cells.
- This Gαi/o/β-arrestin pathway regulates FSH-induced lipid droplet accumulation.
- FSHR expression in endometrial cancer suggests potential for targeted therapies.
- FSHR signal pleiotropy offers avenues for personalized therapeutic strategies.
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