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Combining p53 stabilizers with metformin induces synergistic apoptosis through regulation of energy metabolism in castration-resistant prostate cancer

Chen, Long; Ahmad, Nihal; Liu, Xiaoqi

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2016

10.1080/15384101.2016.1151582

PMID: 26900800 PMCID: PMC4845973

Abstract:

Since altered energy metabolism is a hallmark of cancer, many drugs targeting metabolic pathways are in active clinical trials. The tumor suppressor p53 is often inactivated in cancer, either through downregulation of protein or loss-of-function mutations. As such, stabilization of p53 is considered as one promising approach to treat those cancers carrying wild type (WT) p53. Herein, SIRT1 inhibitor Tenovin-1 and polo-like kinase 1 (Plk1) inhibitor BI2536 were used to stabilize p53. We found that both Tennovin-1 and BI2536 increased the anti-neoplastic activity of metformin, an inhibitor of oxidative phosphorylation, in a p53 dependent manner. Since p53 has also been shown to regulate metabolic pathways, we further analyzed glycolysis and oxidative phosphorylation upon drug treatments. We showed that both Tennovin-1 and BI2536 rescued metformin-induced glycolysis and that both Tennovin-1 and BI2536 potentiated metformin-associated inhibition of oxidative phosphorylation. Of significance, castration-resistant prostate cancer (CRPC) C4-2 cells show a much more robust response to the combination treatment than the parental androgen-dependent prostate cancer LNCaP cells, indicating that targeting energy metabolism with metformin plus p53 stabilizers might be a valid approach to treat CRPC carrying WT p53.

Automatic Tags

Humans; Male; Oxidative Phosphorylation; Signal Transduction; Apoptosis; p53; SIRT1; Mitochondria; Drug Therapy, Combination; Antineoplastic Agents; Cell Line, Tumor; Protein-Serine-Threonine Kinases; Tumor Suppressor Protein p53; Sirtuin 1; Gene Expression Regulation, Neoplastic; Prostate; oxidative phosphorylation; Drug Synergism; Cell Cycle Proteins; Proto-Oncogene Proteins; Prostatic Neoplasms, Castration-Resistant; Acetanilides; BI2536; Mitosis; Plk1; Pteridines; Tenovin-1; Thiourea

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