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Functional multi-organelle units control inflammatory lipid metabolism of macrophages.
Zimmermann, Julia A; Lucht, Kerstin; Stecher, Manuel; Badhan, Chahat; Glaser, Katharina M; Epple, Maximilian W; Koch, Lena R; Deboutte, Ward; Manke, Thomas; Ebnet, Klaus; Brinkmann, Frauke; Fehler, Olesja; Vogl, Thomas; Schuster, Ev-Marie; Bremser, Anna; Buescher, Joerg M; Rambold, Angelika S.
Affiliation
  • Zimmermann JA; Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
  • Lucht K; Center of Chronic Immunodeficiency, Medical Center University of Freiburg, Freiburg, Germany.
  • Stecher M; International Max Planck Research School for Immunobiology, Epigenetics and Metabolism, Freiburg, Germany.
  • Badhan C; Faculty of Biology, University of Freiburg, Freiburg, Germany.
  • Glaser KM; Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
  • Epple MW; Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
  • Koch LR; International Max Planck Research School for Immunobiology, Epigenetics and Metabolism, Freiburg, Germany.
  • Deboutte W; Faculty of Biology, University of Freiburg, Freiburg, Germany.
  • Manke T; Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
  • Ebnet K; International Max Planck Research School for Immunobiology, Epigenetics and Metabolism, Freiburg, Germany.
  • Brinkmann F; Faculty of Biology, University of Freiburg, Freiburg, Germany.
  • Fehler O; Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
  • Vogl T; International Max Planck Research School for Immunobiology, Epigenetics and Metabolism, Freiburg, Germany.
  • Schuster EM; Faculty of Biology, University of Freiburg, Freiburg, Germany.
  • Bremser A; Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
  • Buescher JM; International Max Planck Research School for Immunobiology, Epigenetics and Metabolism, Freiburg, Germany.
  • Rambold AS; Faculty of Biology, University of Freiburg, Freiburg, Germany.
Nat Cell Biol ; 2024 Jul 05.
Article in En | MEDLINE | ID: mdl-38969763
ABSTRACT
Eukaryotic cells contain several membrane-separated organelles to compartmentalize distinct metabolic reactions. However, it has remained unclear how these organelle systems are coordinated when cells adapt metabolic pathways to support their development, survival or effector functions. Here we present OrgaPlexing, a multi-spectral organelle imaging approach for the comprehensive mapping of six key metabolic organelles and their interactions. We use this analysis on macrophages, immune cells that undergo rapid metabolic switches upon sensing bacterial and inflammatory stimuli. Our results identify lipid droplets (LDs) as primary inflammatory responder organelle, which forms three- and four-way interactions with other organelles. While clusters with endoplasmic reticulum (ER) and mitochondria (mitochondria-ER-LD unit) help supply fatty acids for LD growth, the additional recruitment of peroxisomes (mitochondria-ER-peroxisome-LD unit) supports fatty acid efflux from LDs. Interference with individual components of these units has direct functional consequences for inflammatory lipid mediator synthesis. Together, we show that macrophages form functional multi-organellar units to support metabolic adaptation and provide an experimental strategy to identify organelle-metabolic signalling hubs.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nat Cell Biol Year: 2024 Document type: Article Affiliation country: Germany

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nat Cell Biol Year: 2024 Document type: Article Affiliation country: Germany