Tumor control of lysosomal acidification promotes lipoprotein assimilationand ferroptosis resistance
Wu, R.; Hsu, S.-C.; Sang, L.; Yu, M.; Kim, Y. J.; Choe, M.; Hauer, C.; Cai, L.; Hanker, A. B.; Chan, I. S.; Shin, H. R.; Garcia Bermudez, J.
Show abstract
Lysosomes are acidic organelles that fuel cancer progression by facilitating nutrient acquisition and metabolic adaptation, yet the determinants through which cancer cells sustain specialized lysosomal functions are not fully delineated. Notably, assimilation of dietary antioxidants within lipoproteins, a lysosome-dependent process, protects tumors from ferroptosis, an oxidative form of cell death, raising the possibility that tumors evolve mechanisms to enhance this process. Here, we applied genetic screens to identify regulators of lysosome-dependent lipoprotein assimilation and ferroptosis resistance and identified ZNF217, a frequently amplified transcriptional regulator in human cancers, as a driver of tumor lysosomal function and ferroptosis resistance. ZNF217 promoted lipoprotein assimilation through transcriptional maintenance of RAB11FIP4, an endolysosomal protein. Loss of either ZNF217 or RAB11FIP4 impaired lysosomal acidification across multiple cancer types, leading to defective lipoprotein assimilation, increased lipid peroxidation, ferroptosis sensitivity, and impaired tumor growth. Mechanistically, RAB11FIP4 boosts lysosomal acidity through maintenance of RAB7A activity. Finally, disruption of ZNF217 in breast cancer cell lines and patient-derived organoids, a tumor context linked to ZNF217 expression, reduced lysosomal acidity and impaired cancer growth through increased ferroptosis sensitivity. Together, we identify transcriptional regulation of lysosomal acidification as a key metabolic adaptation that enables extracellular antioxidant acquisition and tumor progression.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Succinate Dehydrogenase loss causes cascading metabolic effects that impair pyrimidine biosynthesis 94%
- Mammalian stringent-like response mediated by the cytosolic NADPH phosphatase MESH1 94%
- Neuronal lipid droplets play a conserved and sex-biased role in maintaining whole-body energy homeostasis 93%
Similar papers in this journal
- Renal Coenzyme A (CoA) Production Fuels Stem Cell Proliferation and Tumor Growth 96%
- Cysteine availability tunes ubiquitin signaling via inverse stability of LRRC58 E3 ligase and its substrate CDO1 95%
- Metabolic adaptability in metastatic breast cancer by AKR1B10-dependent balancing of glycolysis and fatty acid oxidation 94%
Similar papers in this journal
- SLC33A1 exports oxidized glutathione to maintain endoplasmic reticulum redox homeostasis 94%
- Reconstitution of BNIP3/NIX-mediated autophagy reveals two pathways and hierarchical flexibility of the initiation machinery 94%
- Copper is an essential regulator of the autophagic kinases ULK1/2 to drive lung adenocarcinoma 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.