Ophiobolin A selectively alters mitochondria, metabolism and redox biology in breast cancer and mammary epithelial cells which have undergone epithelial to mesenchymal transition
Parker, H.; Tao, Y.; Tobin, J.; Haberman, K. L.; Davis, S.; York, E.; Martinez, A.; Matsumoto, N.; Aroujo, J.; Park, J.; Zechmann, B.; Kiapparettu, B. A.; Boari, A.; Sayes, C.; Evidente, A.; Kornienko, A.; Cravatt, B.; Romo, D.; Taube, J.
Show abstract
Breast cancer progression is facilitated by the epithelial to mesenchymal transition (EMT), generating cancer cells with enhanced metastatic capacity and resistance to chemotherapeutics. EMT is known to impart changes in metabolic pathways and mitochondrial function. Here, we show a natural product possesses EMT-specific cytotoxic activity via alterations in metabolic and mitochondrial functions. The fungus-derived sesterterpenoid, ophiobolin A (OpA), possesses nanomolar cytotoxic activity and a high therapeutic index, although its target and mechanism of action remain unknown. Here, we utilized a model of mammary epithelial cells and breast cancer cell lines with and without EMT features to characterize the mechanism of selectivity towards EMT(+) cells by OpA and to identify novel targets for the treatment of EMT-enriched breast cancer. Proteins interacting with OpA in EMT(+) cells were identified through proteomic studies. We utilized trans-mitochondrial cybrids to determine that mitochondria mediate sensitivity to OpA. Furthermore, we report effects on glycolysis, oxidative metabolism, and disruption of metabolite abundance in the TCA cycle. Alterations to mitochondrial iron concentrations and glutathione production, mediated partly by OpA engagement with the metabolic proteins CISD3 and SLC25A40, were also detected in EMT(+) cells. Antioxidant mechanisms are activated by OpA in EMT(+) cells via the NRF2-ARE pathway, verified by decreased cytotoxicity in EMT(+) cells pretreated with the NRF2 activator CDDO. Collectively, we conclude that OpA selectivity toward EMT is mediated by the mitochondria, and at sub-cytotoxic levels, generates a metabolic shift leading to cell death countered by antioxidant mechanisms.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Amino acid restriction sensitizes lung cancer cells toferroptosis via GCN2-dependent activation of the integratedstress response 96%
- Low level of antioxidant capacity biomarkers but not target overexpression predicts vulnerability to ROS-inducing drugs 95%
- A CRISPR screen identifies redox vulnerabilities for KEAP1/NRF2 mutant non-small cell lung cancer 95%
Similar papers in this journal
- Inhibition of the polyamine synthesis enzyme ornithine decarboxylase sensitizes triple-negative breast cancer cells to cytotoxic chemotherapy 96%
- Comparative analysis of N-terminal cysteine dioxygenation and prolyl-hydroxylation as oxygen sensing pathways in mammalian cells 95%
- H2S remodels mitochondrial ultrastructure and destabilizes respiratory supercomplexes 95%
Similar papers in this journal
- Myoglobin Inhibits Breast Cancer Cell Fatty Acid Oxidation and Migration via Heme-Dependent Oxidant Production and Not Fatty Acid Binding 97%
- PCK2 opposes mitochondrial respiration and maintains the redox balance in starved lung cancer cells 94%
- Redox Regulation of Cell Migration via Nischarin S-glutathionylation 94%
Similar papers in this journal
- The Bacterial Quorum-Sensing Signal 2-Aminoacetophenone Rewires Immune Cell Bioenergetics through the PGC-1α/ERRα Axis to Mediate Tolerance to Infection 95%
- A subset of CB002 xanthine analogues bypass p53-signaling to restore a p53 transcriptome and target an S-phase cell cycle checkpoint in tumors with mutated-p53 95%
- DECR1 is an androgen-repressed survival factor that regulates PUFA oxidation to protect prostate tumor cells from ferroptosis 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.