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Published on: September 3, 2013
GZ17-6.02 kills prostate cancer cells in vitro and in vivo
Laurence Booth1, Jane L Roberts1, Cameron West2
1Department of Biochemistry and Molecular Biology, Virginia Commonwealth University, Richmond, VA, United States.
Abstract:
GZ17-6.02 is undergoing clinical evaluation in solid tumors and lymphoma. We defined the biology of GZ17-6.02 in prostate cancer cells and determined whether it interacted with the PARP1 inhibitor olaparib to enhance tumor cell killing. GZ17-6.02 interacted in a greater than additive fashion with olaparib to kill prostate cancer cells, regardless of androgen receptor expression or loss of PTEN function. Mechanistically, GZ17-6.02 initially caused peri-nuclear activation of ataxia-telangiectasia mutated (ATM) that was followed after several hours by activation of nuclear ATM, and which at this time point was associated with increased levels of DNA damage. Directly downstream of ATM, GZ17-6.02 and olaparib cooperated to activate the AMP-dependent protein kinase (AMPK) which then activated the kinase ULK1, resulting in autophagosome formation that was followed by autophagic flux. Knock down of ATM, AMPKα or the autophagy-regulatory proteins Beclin1 or ATG5 significantly reduced tumor cell killing. GZ17-6.02 and olaparib cooperated to activate protein kinase R which phosphorylated and inactivated eIF2α, i.e., enhanced endoplasmic reticulum (ER) stress signaling. Knock down of eIF2α also significantly reduced autophagosome formation and tumor cell killing. We conclude that GZ17-6.02 and olaparib interact to kill prostate cancer cells in vitro by increasing autophagy and by enhancing ER stress signaling. In vivo, GZ17-6.02 as a single agent profoundly reduced tumor growth and significantly prolonged animal survival. GZ17-6.02 interacted with olaparib to further suppress the growth of LNCaP tumors without ultimately enhancing animal survival. Our data support the consideration of GZ17-6.02 as a possible therapeutic agent in patients with AR+ prostate cancer.
Insights
GZ17-6.02 and olaparib kill prostate cancer cells by increasing autophagy and ER stress. This combination therapy shows promise for treating androgen receptor-positive prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- GZ17-6.02 is under clinical investigation for solid tumors and lymphoma.
- Prostate cancer remains a significant health concern, necessitating novel therapeutic strategies.
- Understanding drug interactions is crucial for optimizing cancer treatment regimens.
Purpose of the Study:
- To investigate the biological effects of GZ17-6.02 in prostate cancer cells.
- To determine the synergistic potential of GZ17-6.02 with the PARP1 inhibitor olaparib.
- To elucidate the molecular mechanisms underlying the combined anti-cancer effects.
Main Methods:
- Cell-based assays were used to assess GZ17-6.02 and olaparib interactions.
- Western blotting and immunofluorescence were employed to study protein activation and localization.
- Gene knockdown experiments were performed to identify key molecular players.
- In vitro and in vivo models of prostate cancer were utilized.
Main Results:
- GZ17-6.02 and olaparib exhibited a synergistic effect, enhancing prostate cancer cell killing.
- The combination therapy activated ataxia-telangiectasia mutated (ATM), AMP-dependent protein kinase (AMPK), and ULK1, leading to increased autophagy.
- Enhanced endoplasmic reticulum (ER) stress signaling through protein kinase R and eIF2α was observed.
- GZ17-6.02 monotherapy reduced tumor growth and prolonged survival in vivo; combination therapy suppressed LNCaP tumor growth.
Conclusions:
- GZ17-6.02 and olaparib synergistically kill prostate cancer cells by inducing autophagy and ER stress.
- The findings support the potential of GZ17-6.02 as a therapeutic agent for androgen receptor-positive prostate cancer.
- Further clinical evaluation of GZ17-6.02, particularly in combination therapy, is warranted.

