MEK inhibition induces apoptosis in osteosarcoma cells with constitutive ERK1/2 phosphorylation
Zuzanna Baranski1, Tijmen H Booij1, Marieke L Kuijjer2
1Division of Toxicology, Leiden/Academic Center for Drug Research, Leiden University, Leiden, The Netherlands.
Abstract:
Conventional high-grade osteosarcoma is the most common primary bone cancer with relatively high incidence in young people. Recurrent and metastatic tumors are difficult to treat. We performed a kinase inhibitor screen in two osteosarcoma cell lines, which identified MEK1/2 inhibitors. These inhibitors were further validated in a panel of six osteosarcoma cell lines. Western blot analysis was performed to assess ERK activity and efficacy of MEK inhibition. A 3D culture system was used to validate results from 2D monolayer cultures. Gene expression analysis was performed to identify differentially expressed gene signatures in sensitive and resistant cell lines. Activation of the AKT signaling network was explored using Western blot and pharmacological inhibition. In the screen, Trametinib, AZD8330 and TAK-733 decreased cell viability by more than 50%. Validation in six osteosarcoma cell lines identified three cell lines as resistant and three as sensitive to the inhibitors. Western blot analysis of ERK activity revealed that sensitive lines had high constitutive ERK activity. Treatment with the three MEK inhibitors in a 3D culture system validated efficacy in inhibition of osteosarcoma viability. MEK1/2 inhibition represents a candidate treatment strategy for osteosarcomas displaying high MEK activity as determined by ERK phosphorylation status.
Insights
MEK1/2 inhibitors show promise for treating high-grade osteosarcoma, particularly in tumors with high ERK activity. This study identified specific inhibitors effective in reducing cancer cell viability.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- High-grade osteosarcoma is a primary bone cancer prevalent in young individuals.
- Recurrent and metastatic osteosarcoma presents significant treatment challenges.
Purpose of the Study:
- To identify potential therapeutic targets for osteosarcoma through kinase inhibitor screening.
- To evaluate the efficacy of MEK1/2 inhibitors in osteosarcoma cell lines.
Main Methods:
- Kinase inhibitor screening in osteosarcoma cell lines.
- Validation using Western blot for ERK activity and 3D culture systems.
- Gene expression analysis and AKT signaling pathway investigation.
Main Results:
- Trametinib, AZD8330, and TAK-733 significantly decreased osteosarcoma cell viability.
- Three out of six cell lines were sensitive to MEK1/2 inhibitors, correlating with high ERK activity.
- MEK1/2 inhibition demonstrated efficacy in reducing osteosarcoma viability in 3D cultures.
Conclusions:
- MEK1/2 inhibitors are a potential treatment strategy for osteosarcoma.
- Sensitivity to MEK1/2 inhibitors is linked to high ERK phosphorylation status.
- Targeting MEK1/2 offers a promising avenue for osteosarcoma therapy.
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