Related Experiment Video
Updated: Apr 16, 2026

Ultrasound-Guided Orthotopic Implantation of Murine Pancreatic Ductal Adenocarcinoma
Published on: November 19, 2019
Targeting mcl-1 for radiosensitization of pancreatic cancers
Dongping Wei1, Qiang Zhang1, Jason S Schreiber1
1Department of Radiation Oncology, University of Michigan Medical School.
Abstract:
In order to identify targets whose inhibition may enhance the efficacy of chemoradiation in pancreatic cancer, we previously conducted an RNAi library screen of 8,800 genes. We identified Mcl-1 (myeloid cell leukemia-1), an anti-apoptotic member of the Bcl-2 family, as a target for sensitizing pancreatic cancer cells to chemoradiation. In the present study we investigated Mcl-1 inhibition by either genetic or pharmacological approaches as a radiosensitizing strategy in pancreatic cancer cells. Mcl-1 depletion by siRNA produced significant radiosensitization in BxPC-3 and Panc-1 cells in association with Caspase-3 activation and PARP cleavage, but only minimal radiosensitization in MiaPaCa-2 cells. We next tested the ability of the recently identified, selective, small molecule inhibitor of Mcl-1, UMI77, to radiosensitize in pancreatic cancer cells. UMI77 caused dissociation of Mcl-1 from the pro-apoptotic protein Bak and produced significant radiosensitization in BxPC-3 and Panc-1 cells, but minimal radiosensitization in MiaPaCa-2 cells. Radiosensitization by UMI77 was associated with Caspase-3 activation and PARP cleavage. Importantly, UMI77 did not radiosensitize normal small intestinal cells. In contrast, ABT-737, an established inhibitor of Bcl-2, Bcl-XL, and Bcl-w, failed to radiosensitize pancreatic cancer cells suggesting the unique importance of Mcl-1 relative to other Bcl-2 family members to radiation survival in pancreatic cancer cells. Taken together, these results validate Mcl-1 as a target for radiosensitization of pancreatic cancer cells and demonstrate the ability of small molecules which bind the canonical BH3 groove of Mcl-1, causing displacement of Mcl-1 from Bak, to selectively radiosensitize pancreatic cancer cells.
Insights
Targeting myeloid cell leukemia-1 (Mcl-1) enhances chemoradiation efficacy in pancreatic cancer. A small molecule inhibitor, UMI77, selectively sensitizes cancer cells to radiation by disrupting Mcl-1 interactions, offering a promising therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Radiotherapy Research
Background:
- Pancreatic cancer exhibits resistance to chemoradiation.
- Identifying novel targets to enhance treatment efficacy is crucial.
- Mcl-1 (myeloid cell leukemia-1) is an anti-apoptotic protein implicated in cancer cell survival.
Purpose of the Study:
- To investigate Mcl-1 inhibition as a strategy to sensitize pancreatic cancer cells to chemoradiation.
- To evaluate both genetic (siRNA) and pharmacological (UMI77) approaches for Mcl-1 inhibition.
- To assess the selectivity of Mcl-1 inhibition in cancer versus normal cells.
Main Methods:
- RNAi library screen to identify potential targets.
- siRNA-mediated depletion of Mcl-1 in pancreatic cancer cell lines (BxPC-3, Panc-1, MiaPaCa-2).
- Treatment with UMI77, a selective Mcl-1 inhibitor, and assessment of radiosensitization.
- Analysis of apoptosis markers (Caspase-3 activation, PARP cleavage) and protein interactions (Mcl-1/Bak).
- Comparison with ABT-737, a broader Bcl-2 family inhibitor.
Main Results:
- Mcl-1 depletion via siRNA radiosensitized BxPC-3 and Panc-1 cells, but not MiaPaCa-2 cells.
- The Mcl-1 inhibitor UMI77 significantly radiosensitized BxPC-3 and Panc-1 cells.
- UMI77 treatment led to Caspase-3 activation and PARP cleavage.
- UMI77 selectively radiosensitized pancreatic cancer cells without affecting normal small intestinal cells.
- ABT-737 failed to radiosensitize pancreatic cancer cells, highlighting Mcl-1's specific role.
Conclusions:
- Mcl-1 is a validated target for enhancing chemoradiation efficacy in pancreatic cancer.
- Small molecule inhibitors targeting the Mcl-1 BH3 groove, like UMI77, can selectively radiosensitize pancreatic cancer cells.
- Disruption of Mcl-1 interaction with Bak is a key mechanism for radiosensitization.

