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Rictor/mTORC2 Drives Progression and Therapeutic Resistance of HER2-Amplified Breast Cancers
Meghan Morrison Joly1, Donna J Hicks1, Bayley Jones1
1Department of Cancer Biology, Vanderbilt University, Nashville, Tennessee.
Abstract:
HER2 overexpression drives Akt signaling and cell survival and HER2-enriched breast tumors have a poor outcome when Akt is upregulated. Akt is activated by phosphorylation at T308 via PI3K and S473 via mTORC2. The importance of PI3K-activated Akt signaling is well documented in HER2-amplified breast cancer models, but the significance of mTORC2-activated Akt signaling in this setting remains uncertain. We report here that the mTORC2 obligate cofactor Rictor is enriched in HER2-amplified samples, correlating with increased phosphorylation at S473 on Akt. In invasive breast cancer specimens, Rictor expression was upregulated significantly compared with nonmalignant tissues. In a HER2/Neu mouse model of breast cancer, genetic ablation of Rictor decreased cell survival and phosphorylation at S473 on Akt, delaying tumor latency, penetrance, and burden. In HER2-amplified cells, exposure to an mTORC1/2 dual kinase inhibitor decreased Akt-dependent cell survival, including in cells resistant to lapatinib, where cytotoxicity could be restored. We replicated these findings by silencing Rictor in breast cancer cell lines, but not silencing the mTORC1 cofactor Raptor (RPTOR). Taken together, our findings establish that Rictor/mTORC2 signaling drives Akt-dependent tumor progression in HER2-amplified breast cancers, rationalizing clinical investigation of dual mTORC1/2 kinase inhibitors and developing mTORC2-specific inhibitors for use in this setting. Cancer Res; 76(16); 4752-64. ©2016 AACR.
Insights
Rictor/mTORC2 signaling promotes tumor growth in HER2-amplified breast cancer by activating Akt. Inhibiting this pathway may overcome resistance to existing therapies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- HER2 overexpression is a key driver in certain breast cancers, leading to poor outcomes.
- Akt signaling, activated by PI3K and mTORC2, is crucial for cancer cell survival.
- The role of mTORC2-activated Akt signaling in HER2-amplified breast cancer is not fully understood.
Purpose of the Study:
- To investigate the significance of Rictor/mTORC2 signaling in HER2-amplified breast cancer.
- To determine if targeting Rictor/mTORC2 can impact tumor progression and drug resistance.
Main Methods:
- Analysis of Rictor expression in human breast cancer specimens.
- Genetic ablation of Rictor in a HER2/Neu mouse model.
- Treatment of HER2-amplified cells with an mTORC1/2 dual kinase inhibitor.
- Silencing Rictor and Raptor in breast cancer cell lines.
Main Results:
- Rictor is enriched in HER2-amplified breast cancers and upregulated in invasive tumors.
- Rictor ablation in mice reduced tumor growth and Akt phosphorylation at S473.
- mTORC1/2 inhibition decreased cell survival and restored sensitivity to lapatinib in resistant cells.
- Rictor silencing, but not Raptor silencing, mimicked these effects.
Conclusions:
- Rictor/mTORC2 signaling is a critical driver of Akt-dependent tumor progression in HER2-amplified breast cancer.
- Targeting Rictor/mTORC2 warrants clinical investigation, including the development of mTORC2-specific inhibitors.
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