A three-organelle complex made by wrappER contacts with peroxisomes and mitochondria responds to liver lipid flux changes

Author:

Ilacqua Nicolò12,Anastasia Irene12,Raimondi Andrea3,Lemieux Philippe2ORCID,de Aguiar Vallim Thomas Q.4,Toth Katalin5,Koonin Eugene V.6,Pellegrini Luca27ORCID

Affiliation:

1. Graduate Program in Neuroscience, Faculty of Medicine, Laval University, Quebec, QC, G1V 0A6, Canada

2. Mitochondria Biology Laboratory, Brain Research Center, Quebec, QC, G1E 1T2, Canada

3. Experimental Imaging Center, San Raffaele Scientific Institute, Milan, 20132, Italy

4. Department of Biological Chemistry, Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA 90095, USA

5. Department of Cellular and Molecular Medicine, University of Ottawa, Ottawa, ON, K1H 8M5, Canada

6. National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD 20894, USA

7. Deptartment of Molecular Biology, Medical Biochemistry, and Pathology, Faculty of Medicine, Laval University, Quebec, QC, G1V 0A6, Canada

Abstract

ABSTRACT Hepatic lipid homeostasis depends on intracellular pathways that respire fatty acid in peroxisomes and mitochondria, and on systemic pathways that secrete fatty acid into the bloodstream, either free or condensed in very-low-density lipoprotein (VLDL) triglycerides. These systemic and intracellular pathways are interdependent, but it is unclear whether and how they integrate into a single cellular circuit. Here, we report that mouse liver wrappER, a distinct endoplasmic reticulum (ER) compartment with apparent fatty acid- and VLDL-secretion functions, connects peroxisomes and mitochondria. Correlative light electron microscopy, quantitative serial section electron tomography and three-dimensional organelle reconstruction analysis show that the number of peroxisome-wrappER-mitochondria complexes changes throughout fasting-to-feeding transitions and doubles when VLDL synthesis stops following acute genetic ablation of Mttp in the liver. Quantitative proteomic analysis of peroxisome-wrappER-mitochondria complex-enriched fractions indicates that the loss of Mttp upregulates global fatty acid β-oxidation, thereby integrating the dynamics of this three-organelle association into hepatic fatty acid flux responses. Therefore, liver lipid homeostasis occurs through the convergence of systemic and intracellular fatty acid-elimination pathways in the peroxisome-wrappER-mitochondria complex.

Funder

National Institutes of Health

Canadian Institutes of Health Research

National Center for Biotechnology Information

Centre Thématique de Recherche en Neurosciences

Fonds de recherche du Québec – Santé

Natural Sciences and Engineering Research Council of Canada

Publisher

The Company of Biologists

Subject

Cell Biology

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