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SOS1 and KSR1 modulate MEK inhibitor responsiveness to target resistant cell populations based on PI3K and KRAS
Brianna R Daley1, Heidi M Vieira2, Chaitra Rao2
1Department of Pharmacology and Molecular Therapeutics, Uniformed Services University of the Health Sciences, Bethesda, MD 20814.
Abstract:
KRAS is the most commonly mutated oncogene. Targeted therapies have been developed against mediators of key downstream signaling pathways, predominantly components of the RAF/MEK/ERK kinase cascade. Unfortunately, single-agent efficacy of these agents is limited both by intrinsic and acquired resistance. Survival of drug-tolerant persister cells within the heterogeneous tumor population and/or acquired mutations that reactivate receptor tyrosine kinase (RTK)/RAS signaling can lead to outgrowth of tumor-initiating cells (TICs) and drive therapeutic resistance. Here, we show that targeting the key RTK/RAS pathway signaling intermediates SOS1 (Son of Sevenless 1) or KSR1 (Kinase Suppressor of RAS 1) both enhances the efficacy of, and prevents resistance to, the MEK inhibitor trametinib in KRAS-mutated lung (LUAD) and colorectal (COAD) adenocarcinoma cell lines depending on the specific mutational landscape. The SOS1 inhibitor BI-3406 enhanced the efficacy of trametinib and prevented trametinib resistance by targeting spheroid-initiating cells in KRASG12/G13-mutated LUAD and COAD cell lines that lacked PIK3CA comutations. Cell lines with KRASQ61 and/or PIK3CA mutations were insensitive to trametinib and BI-3406 combination therapy. In contrast, deletion of the RAF/MEK/ERK scaffold protein KSR1 prevented drug-induced SIC upregulation and restored trametinib sensitivity across all tested KRAS mutant cell lines in both PIK3CA-mutated and PIK3CA wild-type cancers. Our findings demonstrate that vertical inhibition of RTK/RAS signaling is an effective strategy to prevent therapeutic resistance in KRAS-mutated cancers, but therapeutic efficacy is dependent on both the specific KRAS mutant and underlying comutations. Thus, selection of optimal therapeutic combinations in KRAS-mutated cancers will require a detailed understanding of functional dependencies imposed by allele-specific KRAS mutations.
Insights
Targeting SOS1 or KSR1 with trametinib can overcome resistance in KRAS-mutated cancers. KSR1 deletion restores sensitivity, while PIK3CA comutations limit efficacy of SOS1 inhibition.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- KRAS mutations are common in cancers, driving signaling pathways like RAF/MEK/ERK.
- Current targeted therapies face intrinsic and acquired resistance, often due to persister cells or RTK/RAS reactivation.
- Understanding resistance mechanisms is crucial for developing effective cancer treatments.
Purpose of the Study:
- To investigate if targeting SOS1 or KSR1 can enhance MEK inhibitor efficacy and prevent resistance in KRAS-mutated cancers.
- To determine the impact of PIK3CA comutations on the efficacy of combined therapies.
- To evaluate KSR1 as a potential target for overcoming therapeutic resistance.
Main Methods:
- Utilized KRAS-mutated lung adenocarcinoma (LUAD) and colorectal adenocarcinoma (COAD) cell lines.
- Tested combination therapy of MEK inhibitor trametinib with SOS1 inhibitor BI-3406.
- Assessed the effect of KSR1 deletion on drug sensitivity and spheroid-initiating cell (SIC) populations.
- Analyzed responses based on specific KRAS mutations and PIK3CA comutations.
Main Results:
- BI-3406 combined with trametinib enhanced efficacy and prevented resistance in KRAS-mutated LUAD/COAD lacking PIK3CA comutations by targeting SICs.
- KRAS-mutated cell lines with PIK3CA mutations were insensitive to trametinib and BI-3406 combination.
- KSR1 deletion prevented drug-induced SIC upregulation and restored trametinib sensitivity in all tested KRAS-mutated cell lines, irrespective of PIK3CA status.
Conclusions:
- Vertical inhibition of RTK/RAS signaling is a viable strategy against KRAS-mutated cancers.
- Therapeutic efficacy is contingent on specific KRAS mutations and co-occurring mutations like PIK3CA.
- Targeting KSR1 shows broad potential for overcoming trametinib resistance in KRAS-mutated cancers, while SOS1 inhibition is context-dependent.
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