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Torin2 Exploits Replication and Checkpoint Vulnerabilities to Cause Death of PI3K-Activated Triple-Negative Breast
Sameer S Chopra1, Anne Jenney2, Adam Palmer2
1Laboratory of Systems Pharmacology, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA; Harvard Ludwig Center, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA; Dana-Farber Cancer Institute, 450 Brookline Ave, Boston, MA 02215, USA.
Torin2, a dual inhibitor of mTOR and PIKKs, shows unique effectiveness against triple-negative breast cancer (TNBC). This novel PI3K pathway inhibitor induces DNA damage and cell death, offering a promising therapeutic strategy for TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The PI3K/AKT/mTOR pathway is frequently mutated in cancers, yet targeted therapies have limited clinical success.
- Triple-negative breast cancer (TNBC) often exhibits high PI3K pathway activity and is primarily treated with chemotherapy.
Purpose of the Study:
- To systematically analyze the response of TNBC cells to various PI3K pathway inhibitors.
- To identify novel therapeutic strategies for TNBC by understanding drug mechanisms.
Main Methods:
- Screening of TNBC cells with a diverse panel of PI3K pathway inhibitors.
- Investigating the molecular mechanisms of action for effective inhibitors, including Torin2.
- Assessing drug-induced DNA damage, cell-cycle progression, and cell death.
Main Results:
- Torin2 demonstrated unusual efficacy in TNBC cells by inhibiting both mTOR and other PI3K-related kinases (PIKKs).
- Unlike mTOR-selective inhibitors, Torin2 disrupts S-phase progression and cell-cycle checkpoints, leading to DNA damage.
- The drug induced cell death via replication catastrophe or mitotic failure.
Conclusions:
- Torin2 and its analogs represent a distinct class of PI3K pathway inhibitors with potent cytotoxicity against TNBC.
- These findings suggest therapeutic potential for Torin2 analogs or combinations of mTOR and PIKK inhibitors in TNBC treatment.
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