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Updated: May 29, 2026

Using RNA-sequencing to Detect Novel Splice Variants Related to Drug Resistance in In Vitro Cancer Models
Published on: December 9, 2016
Identification of chemosensitivity nodes for vinblastine through small interfering RNA high-throughput screens
Carolyn A Kitchens1, Peter R McDonald, Tong Ying Shun
1Department of Pharmacology and Chemical Biology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Abstract:
Discovering chemosensitivity pathways or nodes is an attractive strategy for formulating new drug combinations for cancer. Microtubules are among the most successful anticancer drug targets. Therefore, we implemented a small interfering RNA (siRNA) synthetic lethal screen targeting 5520 unique druggable genes to identify novel chemosensitivity nodes for vinblastine, a microtubule-destabilizing agent used clinically. We transiently transfected human glioblastoma cells with siRNAs for 48 h and then treated cells with a sublethal concentration of vinblastine. Forty-eight hours later, we analyzed cell viability and, using a series of statistical methods, identified 65 gene products that, when suppressed, sensitized glioblastoma cells to vinblastine. After completion of the secondary assays, we focused on one siRNA, B-cell lymphoma extra large (BCL-xL), because of its role in the intrinsic apoptosis signaling pathway as well as the availability of pharmacological inhibitors. We found that nontoxic concentrations of 4-[4-[[2-(4-chlorophenyl)-5,5-dimethylcyclohexen-1-yl]methyl]piperazin-1-yl]-N-[4-[[(2R)-4-morpholin-4-yl-1-phenylsulfanylbutan-2-yl]amino]-3-(trifluoromethylsulfonyl)phenyl]sulfonylbenzamide (ABT-263), an inhibitor of the BCL-2 family members (BCL-2, BCL-xL, and BCL-w), sensitized glioblastoma and non-small-cell lung cancer cells to vinblastine and induced apoptosis through the intrinsic cell death pathway. These results illustrate the usefulness of unbiased siRNA screens as a method for identifying potential novel anticancer therapeutic combinations.
Insights
This study used a large-scale RNA interference screen to find new ways to make cancer cells more sensitive to vinblastine. Targeting B-cell lymphoma extra large (BCL-xL) with ABT-263 sensitized glioblastoma and lung cancer cells to vinblastine, inducing apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Microtubules are validated anticancer drug targets.
- Identifying novel chemosensitivity pathways is crucial for developing effective cancer drug combinations.
Purpose of the Study:
- To identify novel chemosensitivity nodes for vinblastine using a large-scale synthetic lethal screen.
- To investigate the potential of targeting B-cell lymphoma extra large (BCL-xL) in combination with vinblastine.
Main Methods:
- A small interfering RNA (siRNA) synthetic lethal screen targeting 5520 druggable genes in human glioblastoma cells.
- Cells were treated with vinblastine, and viability was analyzed to identify genes sensitizing cells to the drug.
- Secondary assays were performed, focusing on BCL-xL and its inhibition by ABT-263.
Main Results:
- The screen identified 65 gene products that sensitize glioblastoma cells to vinblastine when suppressed.
- Inhibition of BCL-xL using ABT-263 sensitized glioblastoma and non-small-cell lung cancer cells to vinblastine.
- The combination of ABT-263 and vinblastine induced apoptosis via the intrinsic cell death pathway.
Conclusions:
- Unbiased siRNA screens are effective for discovering novel anticancer therapeutic combinations.
- Targeting BCL-xL represents a promising strategy for enhancing vinblastine efficacy in glioblastoma and non-small-cell lung cancer.

