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The hepatic compensatory response to elevated systemic sulfide impairs medium chain fat oxidation and promotes diabetes
- Authors :
- Carter, Roderick N.
Gibbins, Matthew T.G.
Barrios-Llerena, Martin E.
Wilkie, Stephen E.
Freddolino, Peter L.
Libiad, Marouane
Vitvitsky, Victor
Emerson, Barry
Le Bihan, Thierry
Brice, Madara
Su, Huizhong
Denham, Scott
Homer, Natalie Z.M.
Mc Fadden, Clare
Tailleux, Anne
Faresse, Nourdine
Sulpice, Thierry
Briand, Francois
Gillingwater, Tom
Ahn, Kyo Han
Singha, Subhankar
McMaster, Claire
Hartley, Richard C.
Staels, Bart
Gray, Gillian
Finch, Andrew J.
Selman, Colin
Banerjee, Ruma
Morton, Nicholas M. - Publication Year :
- 2020
- Publisher :
- Cold Spring Harbor Laboratory, 2020.
-
Abstract
- Impaired hepatic glucose and lipid metabolism are hallmarks of type–2 diabetes. Increased sulfide production from cysteine, or sulfide–donor compounds, may beneficially regulate hepatic metabolism. Disposal of sulfide through the sulfide oxidation pathway (SOP) is critical for maintaining sulfide within a safe physiological range. We show that mice lacking the liver–enriched mitochondrial SOP enzyme thiosulfate sulfur–transferase ( Tst —/— mice) exhibit high circulating sulfide, increased gluconeogenesis, hypertriglyceridemia and fatty liver, despite whole–body insulin– sensitisation. Unexpectedly, hepatic sulfide levels were normal in Tst —/— mice, a result of homeostatic induction of mitochondrial sulfide disposal and glutathione excretion associated with net suppression of protein persulfidation and nuclear respiratory factor–2 target proteins. Proteomic and persulfidomic profiling converged on hepatic lipid metabolism, revealing a deficit in medium–chain fatty acid oxidation in Tst —/— mice. In conclusion our findings have implications for sulfide-donor strategies in the context of liver function and metabolic disease.
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.sharebioRxiv..8bc399f070262aaf17b48ed0cb1b2591
- Full Text :
- https://doi.org/10.1101/2020.04.27.064287