Evidence map›Paper›PMID 41327238›Full record

ArticleLipids in health and disease2025

Electron microscopy reveals saturated fatty acid-induced membrane defects in AdipoR2-depleted cells.

Dimitra Panagaki, Mario Ruiz, Ranjan Devkota, Johanna L Höög, Richard Neutze, Marc Pilon

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Article in Lipids in health and disease, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

6 authors.

Dimitra PanagakiDepartment of Chemistry and Molecular Biology, University of Gothenburg, Box 115, Gothenburg, S-405 30 , Sweden.
Mario RuizDepartment of Chemistry and Molecular Biology, University of Gothenburg, Box 115, Gothenburg, S-405 30 , Sweden.
Ranjan DevkotaDepartment of Chemistry and Molecular Biology, University of Gothenburg, Box 115, Gothenburg, S-405 30 , Sweden.
Johanna L HöögDepartment of Chemistry and Molecular Biology, University of Gothenburg, Box 115, Gothenburg, S-405 30 , Sweden.
Richard NeutzeDepartment of Chemistry and Molecular Biology, University of Gothenburg, Box 115, Gothenburg, S-405 30 , Sweden.
Marc PilonDepartment of Chemistry and Molecular Biology, University of Gothenburg, Box 115, Gothenburg, S-405 30 , Sweden. marc.pilon@cmb.gu.se.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundMaintaining a proper balance between saturated and unsaturated fatty acids in membrane phospholipids is essential for normal cellular function. The evolutionarily conserved transmembrane protein AdipoR2 plays a central role in this homeostatic process. While the detrimental effects of saturated fatty acids on cells have been previously documented, the associated ultrastructural changes remain less investigated.

methodsHere, we used transmission electron microscopy to study the consequences of silencing AdipoR2 in the presence or absence of fatty acid supplements.

resultsWe found that exposure of human cells to palmitic acid (PA)—the most abundant saturated fatty acid in the human body—disrupts the ultrastructure of cytoplasmic membranes and mitochondrial cristae. PA exposure also induces distinctive blebbing between the inner and outer membranes of the nuclear envelope. These membrane abnormalities are exacerbated by AdipoR2 silencing and are partially prevented by supplementation with oleic acid (OA), an unsaturated fatty acid. Furthermore, we observed ectopic localization of the mitophagy marker PINK1 and the fatty acid metabolism enzyme ACSL1 to closely apposed ER membranes, a structure that forms exclusively in PA-treated cells.

conclusionsTogether, these findings reveal that exogenous PA triggers significant membrane defects, worsened in the absence of AdipoR2, and alters protein distribution within the cell.

Indexed as

Cell MembraneFatty AcidsPalmitic AcidReceptors, AdiponectinCoenzyme A LigasesEndoplasmic ReticulumHumansLong-Chain-Fatty-Acid-CoA LigaseMicroscopy, Electron, TransmissionMitochondriaNuclear EnvelopeOleic AcidADIPOR2 protein, humanCoenzyme A LigasesFatty AcidsLong-Chain-Fatty-Acid-CoA LigaseOleic AcidPalmitic AcidReceptors, AdiponectinAdipoR2Electron microscopyLipidsLipotoxicityMembrane fluidityMitochondriaPalmitatePhospholipidsPhospholipids/trafficking

Identifiers

PMID41327238
PMCPMC12670739

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.