Steroidogenic control of liver metabolism through a nuclear receptor-network
Publication date
2019-12
Authors
Milona, Alexandra
Massafra, Vittoria
Vos, Harmjan R.
Naik, Jyoti
Artigas, Natalia
Paterson, Helen A.B.
Bijsmans, Ingrid T.G.W.
Willemsen, Ellen C.L.
Ramos Pittol, José M
Miguel-Aliaga, Irene
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
cc_by
Abstract
OBJECTIVE: Coupling metabolic and reproductive pathways is essential for the survival of species. However, the functions of steroidogenic enzymes expressed in metabolic tissues are largely unknown. METHODS AND RESULTS: Here, we show that in the liver, the classical steroidogenic enzyme Cyp17a1 forms an essential nexus for glucose and ketone metabolism during feed-fast cycles. Both gain- and loss-of-function approaches are used to show that hepatic Cyp17a1 is induced by fasting, catalyzes the production of at least one hormone-ligand (DHEA) for the nuclear receptor PPARα, and is ultimately required for maintaining euglycemia and ketogenesis during nutrient deprivation. The feedback-loop that terminates Cyp17a1-PPARα activity, and re-establishes anabolic liver metabolism during re-feeding is mapped to postprandial bile acid-signaling, involving the receptors FXR, SHP and LRH-1. CONCLUSIONS: Together, these findings represent a novel paradigm of homeostatic control in which nutritional cues feed-forward on to metabolic pathways by influencing extragonadal steroidogenesis.
Keywords
Bile acids, Cyp17a1, Diabetes, Fasting, FGF21, FXR, Gluconeogenesis, Liver, Metabolism, Steroidogenesis, Molecular Biology, Cell Biology, Journal Article, Research Support, Non-U.S. Gov't
Citation
Milona, A, Massafra, V, Vos, H, Naik, J, Artigas, N, Paterson, H A B, Bijsmans, I T G W, Willemsen, E C L, Ramos Pittol, J M, Miguel-Aliaga, I, Bosma, P, Burgering, B M T, Williamson, C, Vernia, S, Dhillo, W S, van Mil, S W C & Owen, B M 2019, 'Steroidogenic control of liver metabolism through a nuclear receptor-network', Molecular Metabolism, vol. 30, pp. 221-229. https://doi.org/10.1016/j.molmet.2019.09.007, https://doi.org/10.1016/j.molmet.2019.09.007