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Sensitivity of Oncogenic KRAS-Expressing Cells to CDK9 Inhibition
Lick Pui Lai1, Viviane Brel2, Kanika Sharma1
1National Cancer Institute (NCI) RAS Initiative, Cancer Research Technology Program, Frederick National Laboratory for Cancer Research, Leidos Biomedical Research, Frederick, MD, USA.
Abstract:
Oncogenic forms of KRAS proteins are known to be drivers of pancreatic, colorectal, and lung cancers. The goal of this study is to identify chemical leads that inhibit oncogenic KRAS signaling. We first developed an isogenic panel of mouse embryonic fibroblast (MEF) cell lines that carry wild-type RAS, oncogenic KRAS, and oncogenic BRAF. We validated these cell lines by screening against a tool compound library of 1402 annotated inhibitors in an adenosine triphosphate (ATP)-based cell viability assay. Subsequently, this MEF panel was used to conduct a high-throughput phenotypic screen in a cell viability assay with a proprietary compound library. All 126 compounds that exhibited a selective activity against mutant KRAS were selected and prioritized based on their activities in secondary assays. Finally, five chemical clusters were chosen. They had specific activity against SW620 and LS513 over Colo320 colorectal cancer cell lines. In addition, they had no effects on BRAFV600E, MEK1, extracellular signal-regulated kinase 2 (ERK2), phosphoinositide 3-kinase alpha (PI3Kα), AKT1, or mammalian target of rapamycin (mTOR) as tested in in vitro enzymatic activity assays. Biophysical assays demonstrated that these compounds did not bind directly to KRAS. We further identified the mechanism of action and showed that three of them have CDK9 inhibitory activity. In conclusion, we have developed and validated an isogenic MEF panel that was used successfully to identify RAS oncogenic or wild-type allele-specific vulnerabilities. Furthermore, we identified sensitivity of oncogenic KRAS-expressing cells to CDK9 inhibitors, which warrants future studies of treating KRAS-driven cancers with CDK9 inhibitors.
Insights
Researchers identified new compounds targeting KRAS-driven cancers. These compounds selectively inhibit oncogenic KRAS signaling and show promise for treating pancreatic, colorectal, and lung cancers by targeting CDK9.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Oncogenic KRAS proteins are key drivers in pancreatic, colorectal, and lung cancers.
- Targeting KRAS signaling is a critical strategy for cancer therapy.
Purpose of the Study:
- To identify novel chemical inhibitors of oncogenic KRAS signaling.
- To develop and validate a cell-based screening platform for KRAS-targeted drug discovery.
Main Methods:
- Development of an isogenic mouse embryonic fibroblast (MEF) cell line panel with wild-type RAS, oncogenic KRAS, and oncogenic BRAF.
- High-throughput phenotypic screening of a proprietary compound library using cell viability assays.
- Secondary assays for compound prioritization, in vitro enzymatic activity assays, and biophysical binding assays.
Main Results:
- A panel of 126 compounds selectively active against mutant KRAS was identified.
- Five chemical clusters demonstrated specific activity against KRAS-mutant colorectal cancer cell lines without affecting other kinases.
- Three compounds were identified as CDK9 inhibitors, revealing a novel mechanism of action.
Conclusions:
- An isogenic MEF panel successfully identified allele-specific vulnerabilities in RAS signaling.
- Oncogenic KRAS-expressing cells are sensitive to CDK9 inhibitors, suggesting a new therapeutic avenue for KRAS-driven cancers.
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