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Published on: July 28, 2023
RAS isoform specific activities are disrupted by disease associated mutations during cell differentiation
Rohan Chippalkatti1, Bianca Parisi1, Farah Kouzi1
1Cancer Cell Biology and Drug Discovery group, Department of Life Sciences and Medicine, University of Luxembourg, Esch-sur-Alzette 4362, Luxembourg.
Abstract:
The RAS-MAPK-pathway is aberrantly regulated in cancer and developmental diseases called RASopathies. While typically the impact of Ras on the proliferation of various cancer cell lines is assessed, it is poorly established how Ras affects cellular differentiation. Here we implement the C2C12 myoblast cell line to systematically study the effect of Ras mutants and Ras-pathway drugs on differentiation. We first provide evidence that a minor pool of Pax7+ progenitors replenishes a major pool of transit amplifying cells that are ready to differentiate. Our data indicate that Ras isoforms have distinct roles in the differentiating culture, where K-Ras depletion increases and H-Ras depletion decreases terminal differentiation. This assay could therefore provide significant new insights into Ras biology and Ras-driven diseases. In line with this, we found that all oncogenic Ras mutants block terminal differentiation of transit amplifying cells. By contrast, RASopathy associated K-Ras variants were less able to block differentiation. Profiling of eight targeted Ras-pathway drugs on seven oncogenic Ras mutants revealed their allele-specific activities and distinct abilities to restore normal differentiation as compared to triggering cell death. In particular, the MEK-inhibitor trametinib could broadly restore differentiation, while the mTOR-inhibitor rapamycin broadly suppressed differentiation. We expect that this quantitative assessment of the impact of Ras-pathway mutants and drugs on cellular differentiation has great potential to complement cancer cell proliferation data.
Insights
Ras mutations impact cell differentiation in diseases like cancer and RASopathies. This study reveals how Ras isoforms and drugs affect this process, offering new insights into disease mechanisms and potential treatments.
Area of Science:
- Molecular Biology
- Cell Biology
- Developmental Biology
Background:
- The RAS-MAPK pathway is crucial in cancer and RASopathies.
- Ras's role in cell proliferation is well-studied, but its effect on differentiation is less understood.
Purpose of the Study:
- To systematically investigate how Ras mutants and pathway drugs influence cellular differentiation using C2C12 myoblasts.
- To explore the distinct roles of Ras isoforms in the differentiation process.
Main Methods:
- Utilized the C2C12 myoblast cell line to model cellular differentiation.
- Assessed the impact of various Ras isoforms, oncogenic Ras mutants, and RASopathy-associated variants on differentiation.
- Screened eight targeted Ras-pathway drugs against seven oncogenic Ras mutants.
Main Results:
- Identified distinct roles for K-Ras and H-Ras in terminal differentiation.
- Demonstrated that oncogenic Ras mutants block differentiation, while RASopathy variants show reduced blocking ability.
- Showcased allele-specific drug activities, with MEK inhibitor trametinib restoring differentiation and mTOR inhibitor rapamycin suppressing it.
Conclusions:
- This C2C12 differentiation assay provides a novel method to study Ras biology and RASopathies.
- Findings highlight the potential of targeted therapies like trametinib for restoring differentiation in Ras-driven diseases.
- The study complements proliferation data by offering quantitative insights into Ras-mediated differentiation effects.
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