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Published on: February 6, 2015
Abrogation of ATR function preferentially augments cisplatin-induced cytotoxicity in PTEN-deficient breast cancer
Jian-Lei Zhao1, Jun Yang2, Ke Li2
1Department of Pharmacology, West China School of Basic Medical Sciences and Forensic Medicine, Sichuan University, Chengdu, 610041, China.
Abstract:
Targeting replication stress response is currently emerging as new therapeutic strategy for cancer treatment, based on monotherapy and combination approaches. As a key sensor in response to DNA damage, ataxia telangiectasia and rad3-related (ATR) kinase has become a potential therapeutic target as tumor cells are to rely heavily on ATR for survival. The tumor suppressor phosphatase and tensin homolog (PTEN) plays a crucial role in maintaining chromosome integrity. Although ATR inhibition was recently confirmed to show a synergistic inhibitory effect in PTEN-deficient triple-negative breast cancer cells, the molecular mechanism needs to be further elucidated. Additionally, whether the PTEN-deficient breast cancer cells are more preferentially sensitized than PTEN-wild type breast cancer cells to cisplatin plus ATR inhibitor remains unanswered. We demonstrate PTEN dysfunction promotes the killing effect of ATR blockade through the use of RNA interference for PTEN and a highly selective ATR inhibitor VE-821, and certify that VE-821 (1.0 μmol/L) aggravates cytotoxicity of cisplatin on breast cancer cells, especially PTEN-null MDA-MB-468 cells which show more chemoresistance than PTEN-expressing MDA-MB-231 cells. The co-treatment with VE-821 and cisplatin significantly reduced cell viability and proliferative capacity compared with cisplatin mono-treatment (P < 0.05). The increased cytotoxic activity is tied to the enhanced poly (ADP-ribose) polymerase (PARP) cleavage and consequently cell death due to the decrease in phosphorylation levels of checkpoint kinases 1 and 2 (CHK1/2), the reduction of radiation sensitive 51 (RAD51) foci and the increase in phosphorylation of the histone variant H2AX (γ-H2AX) foci (P < 0.05) as well. Together, these findings suggest combination therapy of ATR inhibitor and cisplatin may offer a potential therapeutic strategy for breast tumors.
Insights
Targeting the ATR kinase pathway with ATR inhibitors and cisplatin enhances cancer cell death, particularly in PTEN-deficient breast tumors. This combination therapy shows promise for treating resistant breast cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Targeting the replication stress response is a novel strategy in cancer therapy.
- Ataxia telangiectasia and rad3-related (ATR) kinase is a key DNA damage sensor and a potential therapeutic target.
- The tumor suppressor phosphatase and tensin homolog (PTEN) is critical for maintaining chromosome integrity.
Purpose of the Study:
- To elucidate the molecular mechanism of ATR inhibition in PTEN-deficient breast cancer cells.
- To determine if PTEN-deficient cells are more sensitive to cisplatin combined with an ATR inhibitor than PTEN-wild type cells.
Main Methods:
- Utilized RNA interference to deplete PTEN in breast cancer cells.
- Administered a selective ATR inhibitor (VE-821) and cisplatin, alone and in combination.
- Assessed cell viability, proliferation, poly (ADP-ribose) polymerase (PARP) cleavage, and DNA damage markers (γ-H2AX, RAD51 foci).
Main Results:
- PTEN dysfunction enhanced the cytotoxic effects of ATR blockade.
- VE-821 combined with cisplatin significantly reduced breast cancer cell viability and proliferation compared to cisplatin monotherapy.
- PTEN-null cells (MDA-MB-468) exhibited greater sensitivity to the combination therapy than PTEN-expressing cells (MDA-MB-231).
- Combination treatment led to increased PARP cleavage, decreased CHK1/2 phosphorylation, reduced RAD51 foci, and increased γ-H2AX foci.
Conclusions:
- Combination therapy with an ATR inhibitor and cisplatin shows synergistic cytotoxicity in breast cancer cells.
- PTEN deficiency sensitizes breast cancer cells to ATR inhibition and cisplatin combination therapy.
- This combination strategy may offer a potential therapeutic approach for breast tumors, especially those with PTEN dysfunction.
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