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Published on: January 22, 2021
Molecular subtype-specific responses of colon cancer cells to the SMAC mimetic Birinapant
Michael Fichtner1, Emir Bozkurt1,2, Manuela Salvucci1
1Department of Physiology and Medical Physics, Centre for Systems Medicine, Royal College of Surgeons in Ireland, Dublin, Ireland.
Abstract:
Colorectal cancer is a molecularly heterogeneous disease. Responses to genotoxic chemotherapy in the adjuvant or palliative setting vary greatly between patients, and colorectal cancer cells often resist chemotherapy by evading apoptosis. Antagonists of an inhibitor of apoptosis proteins (IAPs) can restore defective apoptosis signaling by degrading cIAP1 and cIAP2 proteins and by inhibition of XIAP. Due to the multiple molecular mechanisms-of-action of these targets, responses to IAP antagonist may differ between molecularly distinct colon cancer cells. In this study, responses to the IAP antagonist Birinapant and oxaliplatin/5-fluorouracil (5-FU) were investigated in 14 colon cancer cell lines, representing the consensus molecular subtypes (CMS). Treatment with Birinapant alone did not result in a substantial increase in apoptotic cells in this cell line panel. Annexin-V/PI assays quantified by flow cytometry and high-content screening showed that Birinapant increased responses of CMS1 and partially CMS3 cell lines to oxaliplatin/5-FU, whereas CMS2 cells were not effectively sensitized. FRET-based imaging of caspase-8 and -3 activation validated these differences at the single-cell level, with CMS1 cells displaying sustained activation of caspase-8-like activity during Birinapant and oxaliplatin/5-FU co-treatment, ultimately activating the intrinsic mitochondrial apoptosis pathway. In CMS2 cell lines, Birinapant exhibited synergistic effects in combination with TNFα, suggesting that Birinapant can restore extrinsic apoptosis signaling in the context of inflammatory signals in this subtype. To explore this further, we co-cultured CMS2 and CMS1 colon cancer cells with peripheral blood mononuclear cells. We observed increased cell death during Birinapant single treatment in these co-cultures, which was abrogated by anti-TNFα-neutralizing antibodies. Collectively, our study demonstrates that IAP inhibition is a promising modulator of response to oxaliplatin/5-FU in colorectal cancers of the CMS1 subtype, and may show promise as in the CMS2 subtype, suggesting that molecular subtyping may aid as a patient stratification tool for IAP antagonists in this disease.
Insights
Inhibitor of apoptosis protein (IAP) antagonists like Birinapant show promise in sensitizing specific colorectal cancer subtypes (CMS1) to chemotherapy. Birinapant also demonstrates potential in CMS2 subtypes, suggesting molecular subtyping for IAP antagonist therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Colorectal cancer (CRC) exhibits molecular heterogeneity, leading to variable responses to chemotherapy.
- CRC cells often evade apoptosis, a key mechanism of chemotherapy resistance.
- Inhibitor of apoptosis proteins (IAPs) antagonists can restore apoptosis signaling by targeting cIAP1, cIAP2, and XIAP.
Purpose of the Study:
- To investigate the efficacy of the IAP antagonist Birinapant in combination with oxaliplatin/5-fluorouracil (5-FU) across different colorectal cancer molecular subtypes (CMS).
- To elucidate the differential responses of CRC cell lines to Birinapant based on their Consensus Molecular Subtypes (CMS).
- To explore the potential of Birinapant in modulating apoptosis signaling and chemosensitivity in CRC.
Main Methods:
- Evaluated Birinapant and oxaliplatin/5-FU treatment responses in 14 CRC cell lines representing CMS subtypes.
- Utilized Annexin-V/PI assays, flow cytometry, and high-content screening to quantify apoptosis.
- Employed FRET-based imaging for caspase-8 and -3 activation and co-culture experiments with peripheral blood mononuclear cells.
Main Results:
- Birinapant alone did not significantly increase apoptosis across the cell line panel.
- Birinapant sensitized CMS1 and partially CMS3 cell lines to oxaliplatin/5-FU, while CMS2 cells showed limited sensitization.
- CMS1 cells exhibited sustained caspase-8 activation with combination therapy, activating the intrinsic apoptosis pathway.
- Birinapant showed synergistic effects with TNFα in CMS2 cells, restoring extrinsic apoptosis signaling.
- Co-culture experiments revealed Birinapant-induced cell death in CMS2/CMS1 cells, dependent on TNFα.
Conclusions:
- IAP inhibition with Birinapant is a promising strategy to enhance oxaliplatin/5-FU response in CMS1 colorectal cancer.
- Birinapant may also hold therapeutic potential in CMS2 colorectal cancer, particularly in combination with inflammatory signals.
- Molecular subtyping (CMS) can serve as a valuable patient stratification tool for IAP antagonist-based therapies in CRC.
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