MAPL loss dysregulates bile and liver metabolism in mice

Author:

Goyon Vanessa1,Besse‐Patin Aurèle1ORCID,Zunino Rodolfo1,Ignatenko Olesia1,Nguyen Mai1,Coyaud Étienne23ORCID,Lee Jonathan M4,Nguyen Bich N56,Raught Brian23ORCID,McBride Heidi M1ORCID

Affiliation:

1. Montreal Neurological Institute McGill University Montreal QC Canada

2. Princess Margaret Cancer Centre University Health Network Toronto ON Canada

3. Department of Medical Biophysics University of Toronto Toronto ON Canada

4. Biochemistry, Microbiology & Immunology University of Ottawa Ottawa ON Canada

5. Department of Pathology and Cell Biology University of Montreal Montreal QC Canada

6. University of Montreal Health Network Montreal QC Canada

Abstract

AbstractMitochondrial and peroxisomal anchored protein ligase (MAPL) is a dual ubiquitin and small ubiquitin‐like modifier (SUMO) ligase with roles in mitochondrial quality control, cell death and inflammation in cultured cells. Here, we show that MAPL function in the organismal context converges on metabolic control, as knockout mice are viable, insulin‐sensitive, and protected from diet‐induced obesity. MAPL loss leads to liver‐specific activation of the integrated stress response, inducing secretion of stress hormone FGF21. MAPL knockout mice develop fully penetrant spontaneous hepatocellular carcinoma. Mechanistically, the peroxisomal bile acid transporter ABCD3 is a primary MAPL interacting partner and SUMOylated in a MAPL‐dependent manner. MAPL knockout leads to increased bile acid production coupled with defective regulatory feedback in liver in vivo and in isolated primary hepatocytes, suggesting cell‐autonomous function. Together, our findings establish MAPL function as a regulator of bile acid synthesis whose loss leads to the disruption of bile acid feedback mechanisms. The consequences of MAPL loss in liver, along with evidence of tumor suppression through regulation of cell survival pathways, ultimately lead to hepatocellular carcinogenesis.

Funder

Canadian Cancer Society Research Institute

Fonds de Recherche du Québec - Santé

Sigrid Juséliuksen Säätiö

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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