Reducing lipid bilayer stress by monounsaturated fatty acids protects renal proximal tubules in diabetes

Author:

Pérez-Martí Albert1ORCID,Ramakrishnan Suresh1,Li Jiayi1,Dugourd Aurelien2ORCID,Molenaar Martijn R3ORCID,De La Motte Luigi R1,Grand Kelli4,Mansouri Anis2,Parisot Mélanie5,Lienkamp Soeren S4,Saez-Rodriguez Julio26,Simons Matias16ORCID

Affiliation:

1. Section Nephrogenetics, Institute of Human Genetics, University Hospital Heidelberg

2. Institute for Computational Biomedicine, Faculty of Medicine, Heidelberg University, University Hospital Heidelberg

3. European Molecular Biology Laboratorium (EMBL), Structural and Computational Biology Unit

4. Institute of Anatomy, University of Zurich

5. Genomics Core Facility, Institut Imagine-Structure Fédérative de Recherche Necker, INSERM U1163, INSERM US24/CNRS UMS3633, Paris Descartes Sorbonne Paris Cite University

6. Molecular Medicine Partnership Unit (MMPU), European Molecular Biology Laboratory (EMBL) and Heidelberg University

Abstract

In diabetic patients, dyslipidemia frequently contributes to organ damage such as diabetic kidney disease (DKD). Dyslipidemia is associated with both excessive deposition of triacylglycerol (TAG) in lipid droplets (LDs) and lipotoxicity. Yet, it is unclear how these two effects correlate with each other in the kidney and how they are influenced by dietary patterns. By using a diabetes mouse model, we find here that high-fat diet enriched in the monounsaturated oleic acid (OA) caused more lipid storage in LDs in renal proximal tubular cells (PTCs) but less tubular damage than a corresponding butter diet with the saturated palmitic acid (PA). This effect was particularly evident in S2/S3 but not S1 segments of the proximal tubule. Combining transcriptomics, lipidomics, and functional studies, we identify endoplasmic reticulum (ER) stress as the main cause of PA-induced PTC injury. Mechanistically, ER stress is caused by elevated levels of saturated TAG precursors, reduced LD formation, and, consequently, higher membrane order in the ER. Simultaneous addition of OA rescues the cytotoxic effects by normalizing membrane order and increasing both TAG and LD formation. Our study thus emphasizes the importance of monounsaturated fatty acids for the dietary management of DKD by preventing lipid bilayer stress in the ER and promoting TAG and LD formation in PTCs.

Funder

European Research Council

Novo Nordisk Foundation Center for Basic Metabolic Research

Deutsche Forschungsgemeinschaft

Swiss National Centre of Competence in Research Kidney Control of Homeostasis

Fondation pour la Recherche Médicale

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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