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Development and Maintenance of a Preclinical Patient Derived Tumor Xenograft Model for the Investigation of Novel Anti-Cancer Therapies
Published on: September 30, 2016
Targeting RICTOR Sensitizes SMAD4-Negative Colon Cancer to Irinotecan
Chen Khuan Wong1,2, Arthur W Lambert3, Sait Ozturk3
1Graduate Program in Genetics and Genomics, Boston University School of Medicine, Boston, Massachusetts.
Abstract:
Deciphering molecular targets to enhance sensitivity to chemotherapy is becoming a priority for effectively treating cancers. Loss of function mutations of SMAD4 in colon cancer are associated with metastatic progression and resistance to 5-fluorouracil (5-FU), the most extensively used drug of almost all chemotherapy combinations used in the treatment of metastatic colon cancer. Here, we report that SMAD4 deficiency also confers resistance to irinotecan, another common chemotherapeutic frequently used alone or in combination with 5-FU against colon cancer. Mechanistically, we find that SMAD4 interacts with and inhibits RICTOR, a component of the mTORC2 complex, resulting in suppression of downstream effector phosphorylation of AKT at Serine 473. In silico meta-analysis of publicly available gene expression datasets derived from tumors indicates that lower levels of SMAD4 or higher levels of RICTOR/AKT, irrespective of the SMAD4 status, correlate with poor survival, suggesting them as strong prognostic biomarkers and targets for therapeutic intervention. Moreover, we find that overexpression of SMAD4 or depletion of RICTOR suppresses AKT signaling and increases sensitivity to irinotecan in SMAD4-deficient colon cancer cells. Consistent with these observations, pharmacologic inhibition of AKT sensitizes SMAD4-negative colon cancer cells to irinotecan in vitro and in vivo. Overall, our study suggests that hyperactivation of the mTORC2 pathway is a therapeutic vulnerability that could be exploited to sensitize SMAD4-negative colon cancer to irinotecan. IMPLICATIONS: Hyperactivation of the mTORC2 pathway in SMAD4-negative colon cancer provides a mechanistic rationale for targeted inhibition of mTORC2 or AKT as a distinctive combinatorial therapeutic opportunity with chemotherapy for colon cancer.
Insights
Loss of SMAD4 in colon cancer causes resistance to chemotherapy. Targeting the mTORC2 pathway or AKT can re-sensitize these tumors to irinotecan treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- SMAD4 mutations in colon cancer are linked to metastasis and resistance to 5-fluorouracil (5-FU).
- SMAD4 deficiency also impacts sensitivity to irinotecan, a key chemotherapy drug.
Purpose of the Study:
- To investigate the molecular mechanisms by which SMAD4 deficiency confers resistance to irinotecan in colon cancer.
- To identify potential therapeutic targets to overcome this resistance.
Main Methods:
- Investigated the interaction between SMAD4 and RICTOR, a component of the mTORC2 complex.
- Analyzed gene expression datasets to correlate SMAD4, RICTOR, and AKT levels with patient survival.
- Utilized cell culture and in vivo models to test the effects of SMAD4, RICTOR, and AKT modulation on irinotecan sensitivity.
Main Results:
- SMAD4 loss leads to RICTOR inhibition, suppressing AKT phosphorylation at Serine 473.
- Lower SMAD4 or higher RICTOR/AKT levels correlate with poor survival in colon cancer patients.
- Overexpression of SMAD4 or RICTOR depletion sensitizes SMAD4-deficient cells to irinotecan.
- Pharmacologic inhibition of AKT enhances irinotecan efficacy in SMAD4-negative colon cancer.
Conclusions:
- Hyperactivation of the mTORC2 pathway due to SMAD4 deficiency is a key mechanism of irinotecan resistance.
- Targeting mTORC2 or AKT presents a therapeutic strategy to sensitize SMAD4-negative colon cancer to irinotecan.

