SB202190 Predicts BRAF-Activating Mutations in Primary Colorectal Cancer Organoids via Erk1-2 Modulation
Delfina Costa1, Roberta Venè1, Simona Coco2
1SSD Oncologia Molecolare e Angiogenesi, IRCCS Ospedale Policlinico San Martino, Largo Rosanna Benzi 10, 16132 Genova, Italy.
Abstract:
The p38 inhibitor SB202190 is a necessary component of the medium used for normal colorectal mucosa cultures. Sato et al. suggested that the primary activity of SB202190 may be EGFR signaling stabilization, causing an increased phosphorylation of Erk1-2 sustaining organoid proliferation. However, the growth of some colorectal cancer (CRC)-derived organoid cultures is inhibited by this molecule via an unknown mechanism. We biochemically investigated SB202190 activity on a collection of 25 primary human CRC organoids, evaluating EGFR, Akt and Erk1-2 activation using Western blot. We found that Erk1-2 phosphorylation was induced by SB202190 in 20 organoid cultures and inhibited in 5 organoid cultures. A next-generation sequencing (NGS) analysis revealed that the inhibition of p-Erk1-2 signaling corresponded to the cultures with BRAF mutations (with four different hits, one being undescribed), while p-Erk1-2 induction was apparently unrelated to other mutations involving the EGFR pathway (Her2, KRAS and NRAS). We found that SB202190 mirrored the biochemical activity of the BRAF inhibitor Dabrafenib, known to induce the paradoxical activation of p-Erk1-2 signaling in BRAF wild-type cells. SB202190 was a more effective inhibitor of BRAF-mutated organoid growth in the long term than the specific BRAF inhibitors Dabrafenib and PLX8394. Overall, SB202190 can predict BRAF-activating mutations in patient-derived organoids, as well as allowing for the identification of new BRAF variants, preceding and enforcing NGS data.
Insights
The p38 inhibitor SB202190 affects colorectal cancer (CRC) organoid growth differently based on BRAF mutations. It inhibits growth in BRAF-mutated organoids, acting as a potential predictive biomarker.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- SB202190, a p38 inhibitor, is crucial for normal colorectal mucosa cultures.
- It was hypothesized to stabilize EGFR signaling, promoting Erk1-2 phosphorylation and organoid proliferation.
- However, SB202190 inhibits growth in some colorectal cancer (CRC) organoid cultures through an unknown mechanism.
Purpose of the Study:
- To investigate the biochemical activity of SB202190 in human CRC organoids.
- To determine the relationship between SB202190's effect on Erk1-2 phosphorylation and specific genetic mutations.
- To evaluate SB202190 as a potential predictor of BRAF mutations and its efficacy against BRAF-mutated CRC organoids.
Main Methods:
- Biochemical investigation of SB202190 activity on 25 primary human CRC organoids.
- Evaluation of EGFR, Akt, and Erk1-2 activation using Western blot analysis.
- Next-generation sequencing (NGS) to identify genetic mutations, particularly in the BRAF pathway.
Main Results:
- SB202190 induced Erk1-2 phosphorylation in 20 organoid cultures and inhibited it in 5.
- Inhibition of Erk1-2 phosphorylation correlated with the presence of BRAF mutations.
- SB202190 demonstrated superior long-term inhibition of BRAF-mutated organoid growth compared to specific BRAF inhibitors.
Conclusions:
- SB202190 can predict BRAF-activating mutations in patient-derived organoids.
- SB202190 activity is linked to BRAF mutational status, not other EGFR pathway mutations.
- SB202190 identifies new BRAF variants and can precede NGS data, offering a potential diagnostic tool.
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