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Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
Targeting Aberrant p70S6K Activation for Estrogen Receptor-Negative Breast Cancer Prevention
Xiao Wang1, Jun Yao1, Jinyang Wang1
1Department of Molecular and Cellular Oncology, University of Texas MD Anderson Cancer Center, Houston, Texas.
Abstract:
The prevention of estrogen receptor-negative (ER-) breast cancer remains a major challenge in the cancer prevention field, although antiestrogen and aromatase inhibitors have shown adequate efficacy in preventing estrogen receptor-positive (ER+) breast cancer. Lack of commonly expressed, druggable targets is a major obstacle for meeting this challenge. Previously, we detected the activation of Akt signaling pathway in atypical hyperplasic early-stage lesions of patients. In the current study, we found that Akt and the downstream 70 kDa ribosomal protein S6 kinase (p70S6K) signaling pathway was highly activated in ER- premalignant breast lesions and ER- breast cancer. In addition, p70S6K activation induced transformation of ER- human mammary epithelial cells (hMEC). Therefore, we explored the potential of targeting Akt/p70S6K in the p70S6K activated, ER- hMEC models and mouse mammary tumor models for the prevention of ER- breast cancer. We found that a clinically applicable Akt/p70S6K dual inhibitor, LY2780301, drastically decreased proliferation of hMECs with ErbB2-induced p70S6K activation via Cyclin B1 inhibition and cell-cycle blockade at G0-G1 phase, while it did not significantly reverse the abnormal acinar morphology of these hMECs. In addition, a brief treatment of LY2780301 in MMTV-neu mice that developed atypical hyperplasia (ADH) and mammary intraepithelial neoplasia (MIN) lesions with activated p70S6K was sufficient to suppress S6 phosphorylation and decrease cell proliferation in hyperplasic MECs. In summary, targeting the aberrant Akt/p70S6K activation in ER- hMEC models in vitro and in the MMTV-neu transgenic mouse model in vivo effectively inhibited Akt/S6K signaling and reduced proliferation of hMECs in vitro and ADH/MIN lesions in vivo, indicating its potential in prevention of p70S6K activated ER- breast cancer. Cancer Prev Res; 10(11); 641-50. ©2017 AACR.
Insights
Targeting the Akt/p70S6K pathway with LY2780301 effectively inhibited proliferation in estrogen receptor-negative (ER-) breast cancer models. This dual inhibitor shows promise for preventing ER- breast cancer by targeting aberrant signaling pathways.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Prevention
Background:
- Estrogen receptor-negative (ER-) breast cancer prevention is challenging due to a lack of druggable targets.
- The Akt/p70S6K signaling pathway is activated in ER- premalignant lesions and breast cancer.
- p70S6K activation promotes the transformation of ER- human mammary epithelial cells (hMECs).
Purpose of the Study:
- To investigate the potential of targeting the Akt/p70S6K pathway for ER- breast cancer prevention.
- To evaluate the efficacy of the Akt/p70S6K dual inhibitor LY2780301 in preclinical models.
Main Methods:
- Utilized ER- hMEC and MMTV-neu mouse models with activated Akt/p70S6K signaling.
- Administered the dual inhibitor LY2780301 to assess its effects on cell proliferation and signaling pathways.
- Analyzed cell-cycle progression, acinar morphology, and S6 phosphorylation.
Main Results:
- LY2780301 significantly decreased hMEC proliferation by inhibiting Cyclin B1 and causing G0-G1 cell-cycle arrest.
- The inhibitor suppressed S6 phosphorylation and reduced cell proliferation in hyperplastic lesions in MMTV-neu mice.
- LY2780301 did not significantly reverse abnormal acinar morphology in hMECs.
Conclusions:
- Targeting aberrant Akt/p70S6K activation is a viable strategy for ER- breast cancer prevention.
- LY2780301 effectively inhibits Akt/S6K signaling and reduces proliferation in preclinical ER- breast cancer models.
- The findings suggest LY2780301's potential for preventing p70S6K-activated ER- breast cancer.
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