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Co-targeting Hexokinase 2-mediated Warburg Effect and ULK1-dependent Autophagy Suppresses Tumor Growth of PTEN- and TP53-deficiency-driven Castration-resistant Prostate Cancer

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Journal EBioMedicine
Date 2016 Jun 21
PMID 27322458
Citations 37
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Abstract

Currently, no therapeutic options exist for castration-resistant prostate cancer (CRPC) patients who have developed resistance to the second generation anti-androgen receptor (AR) axis therapy. Here we report that co-deletion of Pten and p53 in murine prostate epithelium, often observed in human CRPC, leads to AR-independent CRPC and thus confers de novo resistance to second generation androgen deprivation therapy (ADT) in multiple independent yet complementary preclinical mouse models. In contrast, mechanism-driven co-targeting hexokinase 2 (HK2)-mediated Warburg effect with 2-deoxyglucose (2-DG) and ULK1-dependent autophagy with chloroquine (CQ) selectively kills cancer cells through intrinsic apoptosis to cause tumor regression in xenograft, leads to a near-complete tumor suppression and remarkably extends survival in Pten-/p53-deficiency-driven CRPC mouse model. Mechanistically, 2-DG causes AMPK phosphorylation, which in turn inhibits mTORC1-S6K1 translation signaling to preferentially block anti-apoptotic protein MCL-l synthesis to prime mitochondria-dependent apoptosis while simultaneously activates ULK1-driven autophagy for cell survival to counteract the apoptotic action of anti-Warburg effect. Accordingly, inhibition of autophagy with CQ sensitizes cancer cells to apoptosis upon 2-DG challenge. Given that 2-DG is recommended for phase II clinical trials for prostate cancer and CQ has been clinically used as an anti-malaria drug for many decades, the preclinical results from our proof-of-principle studies in vivo are imminently translatable to clinical trials to evaluate the therapeutic efficacy by the combination modality for a subset of currently incurable CRPC harboring PTEN and TP53 mutations.

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References
1.
Xi H, Kurtoglu M, Lampidis T . The wonders of 2-deoxy-D-glucose. IUBMB Life. 2014; 66(2):110-21. DOI: 10.1002/iub.1251. View

2.
Chen C, Welsbie D, Tran C, Baek S, Chen R, Vessella R . Molecular determinants of resistance to antiandrogen therapy. Nat Med. 2004; 10(1):33-9. DOI: 10.1038/nm972. View

3.
Deng Y, Ren X, Yang L, Lin Y, Wu X . A JNK-dependent pathway is required for TNFalpha-induced apoptosis. Cell. 2003; 115(1):61-70. DOI: 10.1016/s0092-8674(03)00757-8. View

4.
Lu W, Liu S, Li B, Xie Y, Adhiambo C, Yang Q . SKP2 inactivation suppresses prostate tumorigenesis by mediating JARID1B ubiquitination. Oncotarget. 2015; 6(2):771-88. PMC: 4359254. DOI: 10.18632/oncotarget.2718. View

5.
Markert E, Mizuno H, Vazquez A, Levine A . Molecular classification of prostate cancer using curated expression signatures. Proc Natl Acad Sci U S A. 2011; 108(52):21276-81. PMC: 3248553. DOI: 10.1073/pnas.1117029108. View