Connecting lysosomes and mitochondria - a novel role for lipid metabolism in cancer cell death.
Average rating
Cast your vote
You can rate an item by clicking the amount of stars they wish to award to this item.
When enough users have cast their vote on this item, the average rating will also be shown.
Star rating
Your vote was cast
Thank you for your feedback
Thank you for your feedback
Authors
Bartel, KarinPein, Helmut
Popper, Bastian
Schmitt, Sabine
Janaki-Raman, Sudha
Schulze, Almut
Lengauer, Florian
Koeberle, Andreas
Werz, Oliver
Zischka, Hans
Müller, Rolf
Vollmar, Angelika M
von Schwarzenberg, Karin
Issue Date
2019-07-29
Metadata
Show full item recordAbstract
BACKGROUND: The understanding of lysosomes has been expanded in recent research way beyond their view as cellular trash can. Lysosomes are pivotal in regulating metabolism, endocytosis and autophagy and are implicated in cancer. Recently it was discovered that the lysosomal V-ATPase, which is known to induce apoptosis, interferes with lipid metabolism in cancer, yet the interplay between these organelles is poorly understood. METHODS: LC-MS/MS analysis was performed to investigate lipid distribution in cells. Cell survival and signaling pathways were analyzed by means of cell biological methods (qPCR, Western Blot, flow cytometry, CellTiter-Blue). Mitochondrial structure was analyzed by confocal imaging and electron microscopy, their function was determined by flow cytometry and seahorse measurements. RESULTS: Our data reveal that interfering with lysosomal function changes composition and subcellular localization of triacylglycerids accompanied by an upregulation of PGC1α and PPARα expression, master regulators of energy and lipid metabolism. Furthermore, cardiolipin content is reduced driving mitochondria into fission, accompanied by a loss of membrane potential and reduction in oxidative capacity, which leads to a deregulation in cellular ROS and induction of mitochondria-driven apoptosis. Additionally, cells undergo a metabolic shift to glutamine dependency, correlated with the fission phenotype and sensitivity to lysosomal inhibition, most prominent in Ras mutated cells. CONCLUSION: This study sheds mechanistic light on a largely uninvestigated triangle between lysosomes, lipid metabolism and mitochondrial function. Insight into this organelle crosstalk increases our understanding of mitochondria-driven cell death. Our findings furthermore provide a first hint on a connection of Ras pathway mutations and sensitivity towards lysosomal inhibitors.Citation
Cell Commun Signal. 2019 Jul 29;17(1):87. doi: 10.1186/s12964-019-0399-2.Affiliation
HIPS, Helmholtz-Institut für Pharmazeutische Forschung Saarland, Universitätscampus E8.1 66123 Saarbrücken, Germany.Publisher
BMCJournal
Cell Communication and SignalingPubMed ID
31358011Type
ArticleLanguage
enISSN
1478-811Xae974a485f413a2113503eed53cd6c53
10.1186/s12964-019-0399-2
Scopus Count
The following license files are associated with this item:
- Creative Commons
Except where otherwise noted, this item's license is described as Attribution-NonCommercial-ShareAlike 4.0 International
Related articles
- Mode of cell death induction by pharmacological vacuolar H+-ATPase (V-ATPase) inhibition.
- Authors: von Schwarzenberg K, Wiedmann RM, Oak P, Schulz S, Zischka H, Wanner G, Efferth T, Trauner D, Vollmar AM
- Issue date: 2013 Jan 11
- Iejimalides A and B inhibit lysosomal vacuolar H+-ATPase (V-ATPase) activity and induce S-phase arrest and apoptosis in MCF-7 cells.
- Authors: McHenry P, Wang WL, Devitt E, Kluesner N, Davisson VJ, McKee E, Schweitzer D, Helquist P, Tenniswood M
- Issue date: 2010 Mar 1
- Mitochondrial biogenesis: pharmacological approaches.
- Authors: Valero T
- Issue date: 2014
- Drosophila Mitf regulates the V-ATPase and the lysosomal-autophagic pathway.
- Authors: Bouché V, Espinosa AP, Leone L, Sardiello M, Ballabio A, Botas J
- Issue date: 2016
- Parallel damage in mitochondria and lysosomes is an efficient way to photoinduce cell death.
- Authors: Martins WK, Santos NF, Rocha CS, Bacellar IOL, Tsubone TM, Viotto AC, Matsukuma AY, Abrantes ABP, Siani P, Dias LG, Baptista MS
- Issue date: 2019 Feb