Cancer cells exhibit an aberrant metabolism that facilitates more efficient production of biomass and hence tumor growth and progression. However, the genetic cues modulating this metabolic switch remain largely undetermined. We identified a metabolic function for the promyelocytic leukemia (PML) gene, uncovering an unexpected role for this bona fide tumor suppressor in breast cancer cell survival. We found that PML acted as both a negative regulator of PPARγ coactivator 1A (PGC1A) acetylation and a potent activator of PPAR signaling and fatty acid oxidation. We further showed that PML promoted ATP production and inhibited anoikis. Importantly, PML expression allowed luminal filling in 3D basement membrane breast culture models, an effect that was reverted by the pharmacological inhibition of fatty acid oxidation. Additionally, immunohistochemical analysis of breast cancer biopsies revealed that PML was overexpressed in a subset of breast cancers and enriched in triple-negative cases. Indeed, PML expression in breast cancer correlated strikingly with reduced time to recurrence, a gene signature of poor prognosis, and activated PPAR signaling. These findings have important therapeutic implications, as PML and its key role in fatty acid oxidation metabolism are amenable to pharmacological suppression, a potential future mode of cancer prevention and treatment.
Arkaitz Carracedo, Dror Weiss, Amy K. Leliaert, Manoj Bhasin, Vincent C.J. de Boer, Gaelle Laurent, Andrew C. Adams, Maria Sundvall, Su Jung Song, Keisuke Ito, Lydia S. Finley, Ainara Egia, Towia Libermann, Zachary Gerhart-Hines, Pere Puigserver, Marcia C. Haigis, Elefteria Maratos-Flier, Andrea L. Richardson, Zachary T. Schafer, Pier P. Pandolfi
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Stratification and therapeutic potential of PML in metastatic breast cancer
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Nature Communications | 2016 |
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Nature Cell Biology | 2016 |
Hallmarks of cancer stem cell metabolism
P Sancho, D Barneda, C Heeschen |
British Journal of Cancer | 2016 |
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Nature Communications | 2016 |
The DNA Damage Transducer RNF8 Facilitates Cancer Chemoresistance and Progression through Twist Activation
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Molecular Cell | 2016 |
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Oncotarget | 2016 |
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Cell Death and Disease | 2016 |
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Frontiers in Oncology | 2016 |
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The Journal of Cell Biology | 2016 |
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Oncogenesis | 2016 |
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Nature Medicine | 2016 |
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Cell division | 2016 |
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Oncotarget | 2016 |
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Oncotarget | 2016 |
Transcriptomic profiling of urine extracellular vesicles reveals alterations of CDH3 in prostate cancer
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