MemPrep, a new technology for isolating organellar membranes provides fingerprints of lipid bilayer stress

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

  • John Reinhard - , Saarland University (Author)
  • Leonhard Starke - , Saarland University (Author)
  • Christian Klose - , Lipotype GmbH (Author)
  • Per Haberkant - , European Molecular Biology Laboratory (EMBL) Heidelberg (Author)
  • Henrik Hammarén - , European Molecular Biology Laboratory (EMBL) Heidelberg (Author)
  • Frank Stein - , European Molecular Biology Laboratory (EMBL) Heidelberg (Author)
  • Ofir Klein - , Weizmann Institute of Science (Author)
  • Charlotte Berhorst - , Saarland University (Author)
  • Heike Stumpf - , Saarland University (Author)
  • James P Sáenz - , Bottom-up Synthetic Biology (Junior Research Group) (Author)
  • Jochen Hub - , Saarland University (Author)
  • Maya Schuldiner - , Weizmann Institute of Science (Author)
  • Robert Ernst - , Saarland University (Author)

Abstract

Biological membranes have a stunning ability to adapt their composition in response to physiological stress and metabolic challenges. Little is known how such perturbations affect individual organelles in eukaryotic cells. Pioneering work has provided insights into the subcellular distribution of lipids in the yeast Saccharomyces cerevisiae, but the composition of the endoplasmic reticulum (ER) membrane, which also crucially regulates lipid metabolism and the unfolded protein response, remains insufficiently characterized. Here, we describe a method for purifying organelle membranes from yeast, MemPrep. We demonstrate the purity of our ER membrane preparations by proteomics, and document the general utility of MemPrep by isolating vacuolar membranes. Quantitative lipidomics establishes the lipid composition of the ER and the vacuolar membrane. Our findings provide a baseline for studying membrane protein biogenesis and have important implications for understanding the role of lipids in regulating the unfolded protein response (UPR). The combined preparative and analytical MemPrep approach uncovers dynamic remodeling of ER membranes in stressed cells and establishes distinct molecular fingerprints of lipid bilayer stress.

Details

Original languageEnglish
Pages (from-to)1653-1685
Number of pages33
JournalThe EMBO journal
Volume43
Issue number8
Publication statusPublished - Apr 2024
Peer-reviewedYes

External IDs

PubMedCentral PMC11021466
Scopus 85187935349
ORCID /0000-0001-8901-4377/work/184005465

Keywords

Keywords

  • Endoplasmic Reticulum Stress/physiology, Endoplasmic Reticulum/metabolism, Lipid Bilayers/metabolism, Lipid Metabolism, Saccharomyces cerevisiae Proteins/metabolism, Saccharomyces cerevisiae/metabolism, Technology, Unfolded Protein Response