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Updated: May 7, 2026

Employing Digital Droplet PCR to Detect BRAF V600E Mutations in Formalin-fixed Paraffin-embedded Reference Standard Cell Lines
Published on: October 8, 2015
BRAF V600E is a determinant of sensitivity to proteasome inhibitors
Davide Zecchin1, Valentina Boscaro, Enzo Medico
1Corresponding Authors: Federica Di Nicolantonio, Department of Oncology, University of Torino, Institute for Cancer Research and Treatment at Candiolo, Strada Provinciale 142 Km 3.95, Candiolo, I-10060, Turin, Italy. federica.dinicolantonio@unito.it.
Abstract:
A critical step toward defining tailored therapy in patients with cancer is the identification of genetic interactions that may impair-or boost-the efficacy of selected therapeutic approaches. Cell models able to recapitulate combinations of genetic aberrations are important to find drug-genotype interactions poorly affected by the heterogeneous genetics of human tumors. In order to identify novel pharmacogenomic relationships, we employed an isogenic cell panel that reconstructs cancer genetic scenarios. We screened a library of 43 compounds in human hTERT-HME1 epithelial cells in which PTEN or RB1 were silenced in combination with the targeted knockin of cancer-associated mutations in EGFR, KRAS, BRAF, or PIK3CA oncogenes. Statistical analysis and clustering algorithms were applied to display similar drug response profiles and mutation-specific patterns of activity. From the screen, we discovered that proteasome inhibitors show selectivity toward BRAF V600E-mutant cells, irrespective of PTEN or RB1 expression. Preferential targeting of BRAF-mutant cells by proteasome inhibitors was corroborated in a second BRAF V600E isogenic model, as well as in a panel of colorectal cancer cell lines by the use of the proteasome inhibitor carfilzomib. Notably, carfilzomib also showed striking in vivo activity in a BRAF-mutant human colorectal cancer xenograft model. Vulnerability to proteasome inhibitors is dependent on persistent BRAF signaling, because BRAF V600E blockade by PLX4720 reversed sensitivity to carfilzomib in BRAF-mutant colorectal cancer cells. Our findings indicated that proteasome inhibition might represent a valuable targeting strategy in BRAF V600E-mutant colorectal tumors.
Insights
Proteasome inhibitors selectively target cancer cells with BRAF V600E mutations, regardless of other genetic changes. This finding suggests proteasome inhibition as a potential therapy for BRAF-mutant colorectal tumors.
Area of Science:
- Oncology
- Pharmacogenomics
- Cancer Cell Biology
Background:
- Tailored cancer therapy requires understanding genetic interactions affecting drug efficacy.
- Isogenic cell models are crucial for identifying drug-genotype interactions in cancer.
Purpose of the Study:
- To discover novel pharmacogenomic relationships using a cancer genetic scenario model.
- To identify specific drug sensitivities based on oncogenic mutations.
Main Methods:
- Screened 43 compounds on engineered human epithelial cells with silenced PTEN/RB1 and mutated EGFR, KRAS, BRAF, or PIK3CA.
- Utilized statistical analysis and clustering to analyze drug response profiles and mutation-specific activity.
- Validated findings in additional isogenic models and colorectal cancer cell lines using proteasome inhibitor carfilzomib.
Main Results:
- Proteasome inhibitors demonstrated selectivity for BRAF V600E-mutant cells, independent of PTEN or RB1 status.
- Carfilzomib showed efficacy in BRAF V600E-mutant colorectal cancer models, including in vivo xenografts.
- Sensitivity to proteasome inhibitors was linked to persistent BRAF signaling, as blocking BRAF V600E reversed sensitivity.
Conclusions:
- Proteasome inhibition is a promising therapeutic strategy for BRAF V600E-mutant colorectal cancers.
- Understanding drug-genotype interactions is key to developing targeted cancer therapies.
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