The inhibition of inner mitochondrial fusion in hepatocytes reduces non-alcoholic fatty liver and improves metabolic profile during obesity by modulating bile acid conjugation

Author:

Da Dalt Lorenzo1ORCID,Moregola Annalisa1,Svecla Monika1ORCID,Pedretti Silvia1ORCID,Fantini Francesca1,Ronzio Mirko2,Uboldi Patrizia1,Dolfini Diletta2,Donetti Elena3ORCID,Baragetti Andrea1ORCID,Mitro Nico14ORCID,Scorrano Luca56ORCID,Norata Giuseppe Danilo17ORCID

Affiliation:

1. Department of Pharmacological and Biomolecular Sciences “Rodolfo Paoletti”, Università Degli Studi di Milano , Via Balzaretti 9, 20133 Milan , Italy

2. Dipartiment of Biosciences, Università Degli Studi di Milano , Via Celoria 26, 20133 Milan , Italy

3. Department of Biomedical Science for Health, Università Degli Studi di Milano , Via Mangiagalli, 31 , 20133 Milan, Italy

4. Department of Experimental Oncology, IEO, European Institute of Oncology IRCCS , Milan , Italy

5. Department of Biology, University of Padova , Via U. Bassi 58B, 35121 Padova , Italy

6. Veneto Institute of Molecular Medicine , Via Orus 2, 35129 Padova , Italy

7. Center for the Study of Atherosclerosis, E. Bassini Hospital , Via Massimo Gorki 50, Cinisello Balsamo , Italy

Abstract

Abstract Aims Mitochondria are plastic organelles that continuously undergo biogenesis, fusion, fission, and mitophagy to control cellular energy metabolism, calcium homeostasis, hormones, sterols, and bile acids (BAs) synthesis. Here, we evaluated how the impairment of mitochondrial fusion in hepatocytes affects diet-induced liver steatosis and obesity. Methods and results Male mice selectively lacking the key protein involved in inner mitochondrial fusion, optic atrophy 1 (OPA1) (OPA1ΔHep) were fed a high fat diet (HFD) for 20 weeks. OPA1ΔHep mice were protected from the development of hepatic steatosis and obesity because of reduced lipid absorption; a profile which was accompanied by increased respiratory exchange ratio in vivo, suggesting a preference for carbohydrates in OPA1ΔHep compared to controls. At the molecular level, this phenotype emerged as a consequence of poor mitochondria-peroxisome- endoplasmic reticulum (ER) tethering in OPA1 deficient hepatocytes, which impaired BAs conjugation and release in the bile, thus impacting lipid absorption from the diet. Concordantly, the liver of subjects with non-alcoholic fatty liver disease (NAFLD) presented an increased expression of OPA1 and of the network of proteins involved in mitochondrial function when compared with controls. Conclusion Patients with NAFLD present increased expression of proteins involved in mitochondrial fusion in the liver. The selective deficency of OPA1 in hepatocytes protects mice from HFD-induced metabolic dysfunction by reducing BAs secretion and dietary lipids absorption as a consequence of reduced liver mitochondria-peroxisome-ER tethering.

Funder

Telethon Foundation

Ministry of Health

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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