Lipidomic profiling of rat hepatic stellate cells during activation reveals a two-stage process accompanied by increased levels of lysosomal lipids

Martijn R Molenaar, Maya W Haaker, A Bas Vaandrager, Martin Houweling, J Bernd Helms*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Hepatic stellate cells (HSCs) are liver-resident cells best known for their role in vitamin A storage under physiological conditions. Upon liver injury, HSCs activate into myofibroblast-like cells, a key process in the onset of liver fibrosis. Lipids play an important role during HSC activation. Here, we provide a comprehensive characterization of the lipidomes of primary rat HSCs during 17 days of activation in vitro. For lipidomic data interpretation, we expanded our previously described Lipid Ontology (LION) and associated web application (LION/Web) with the LION-PCA heatmap module, which generates heatmaps of the most typical LION-signatures in lipidomic datasets. Furthermore, we used LION to perform pathway analysis to determine the significant metabolic conversions in lipid pathways. Together, we identify two distinct stages of HSC activation. In the first stage, we observe a decrease of saturated phosphatidylcholine, sphingomyelin, and phosphatidic acid and an increase in phosphatidylserine and polyunsaturated bis(monoacylglycero)phosphate (BMP), a lipid class typically localized at endosomes and lysosomes. In the second activation stage, BMPs, hexosylceramides, and ether-linked phosphatidylcholines are elevated, resembling a lysosomal lipid storage disease profile. The presence of isomeric structures of BMP in HSCs was confirmed ex vivo in MS-imaging datasets of steatosed liver sections. Finally, treatment with pharmaceuticals targeting the lysosomal integrity led to cell death in primary HSCs but not in HeLa cells. In summary, our combined data suggest that lysosomes play a critical role during a two-stage activation process of HSCs.

Original languageEnglish
Article number103042
Number of pages14
JournalJournal of Biological Chemistry
Volume299
Issue number4
Early online date18 Feb 2023
DOIs
Publication statusPublished - Apr 2023

Bibliographical note

Funding Information:
We thank Jos Brouwers for help during the initial stages of this project and Jeroen Jansen for expert technical assistance with the lipidomic experiments. M. R. M. A. B. V. M. H. and J. B. H. conceptualization; M. R. M. and J. B. H. methodology; M. R. M. software; M. R. M. validation; M. R. M. and M. W. H. formal analysis; M. R. M. and M. W. H. investigation; M. R. M. and J. B. H. writing–original draft; A. B. V. M. H. and J. B. H. writing–review and editing; J. B. H. supervision.

Publisher Copyright:
© 2023 The Authors

Keywords

  • bioinformatics
  • hepatic stellate cell
  • lipidomics
  • lysosome
  • phospholipid turnover
  • polyunsaturated fatty acid

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