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A Multiplexed Luciferase-based Screening Platform for Interrogating Cancer-associated Signal Transduction in Cultured Cells
Published on: July 3, 2013
An integrative gene expression signature analysis identifies CMS4 KRAS-mutated colorectal cancers sensitive to
Mingli Yang1, Thomas B Davis1, Lance Pflieger2
1Department of Surgery & Molecular Medicine, University of South Florida, Tampa General Hospital Cancer Institute, 560 Channelside Drive, Tampa, FL, 33602, USA.
Background:
Over half of colorectal cancers (CRCs) are hard-wired to RAS/RAF/MEK/ERK pathway oncogenic signaling. However, the promise of targeted therapeutic inhibitors, has been tempered by disappointing clinical activity, likely due to complex resistance mechanisms that are not well understood. This study aims to investigate MEK inhibitor-associated resistance signaling and identify subpopulation(s) of CRC patients who may be sensitive to biomarker-driven drug combination(s).
Methods:
We classified 2250 primary and metastatic human CRC tumors by consensus molecular subtypes (CMS). For each tumor, we generated multiple gene expression signature scores measuring MEK pathway activation, MEKi "bypass" resistance, SRC activation, dasatinib sensitivity, EMT, PC1, Hu-Lgr5-ISC, Hu-EphB2-ISC, Hu-Late TA, Hu-Proliferation, and WNT activity. We carried out correlation, survival and other bioinformatic analyses. Validation analyses were performed in two independent publicly available CRC tumor datasets (n = 585 and n = 677) and a CRC cell line dataset (n = 154).
Results:
Here we report a central role of SRC in mediating "bypass"-resistance to MEK inhibition (MEKi), primarily in cancer stem cells (CSCs). Our integrated and comprehensive gene expression signature analyses in 2250 CRC tumors reveal that MEKi-resistance is strikingly-correlated with SRC activation (Spearman P < 10-320), which is similarly associated with EMT (epithelial to mesenchymal transition), regional metastasis and disease recurrence with poor prognosis. Deeper analysis shows that both MEKi-resistance and SRC activation are preferentially associated with a mesenchymal CSC phenotype. This association is validated in additional independent CRC tumor and cell lines datasets. The CMS classification analysis demonstrates the strikingly-distinct associations of CMS1-4 subtypes with the MEKi-resistance and SRC activation. Importantly, MEKi + SRCi sensitivities are predicted to occur predominantly in the KRAS mutant, mesenchymal CSC-like CMS4 CRCs.
Conclusions:
Large human tumor gene expression datasets representing CRC heterogeneity can provide deep biological insights heretofore not possible with cell line models, suggesting novel repurposed drug combinations. We identified SRC as a common targetable node--an Achilles' heel--in MEKi-targeted therapy-associated resistance in mesenchymal stem-like CRCs, which may help development of a biomarker-driven drug combination (MEKi + SRCi) to treat problematic subpopulations of CRC.
Insights
SRC activation drives resistance to MEK inhibitors in colorectal cancer (CRC) stem cells. Targeting SRC with MEK inhibitors may benefit mesenchymal stem-like CRC patients, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Over half of colorectal cancers (CRCs) involve RAS/RAF/MEK/ERK pathway signaling.
- Targeted therapies show limited efficacy due to poorly understood resistance mechanisms.
Purpose of the Study:
- Investigate MEK inhibitor (MEKi)-associated resistance signaling in CRC.
- Identify CRC patient subpopulations sensitive to combination therapies.
Main Methods:
- Classified 2250 CRC tumors using consensus molecular subtypes (CMS).
- Generated gene expression signature scores for pathway activation, resistance, and subtype markers.
- Performed correlation, survival, and bioinformatic analyses, validated in independent datasets.
Main Results:
- SRC activation is central to MEKi resistance, particularly in cancer stem cells (CSCs).
- MEKi resistance and SRC activation correlate with epithelial-to-mesenchymal transition (EMT), metastasis, and poor prognosis.
- Mesenchymal CSC-like CMS4 CRCs with KRAS mutations show predicted sensitivity to MEKi + SRC inhibitor (SRCi) combinations.
Conclusions:
- Large-scale gene expression data reveal insights beyond cell line models.
- SRC is a targetable vulnerability in MEKi-resistant mesenchymal stem-like CRCs.
- A biomarker-driven combination of MEKi + SRCi may treat specific CRC subpopulations.
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