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Expression of Cancer Stem Cell Markers EpCAM and CD90 Is Correlated with Anti- and Pro-Oncogenic EphA2 Signaling in
Nobuhiko Asakura1, Naotoshi Nakamura1, Atsushi Muroi2
1Center for Mathematical Modeling and Data Science, Osaka University, Osaka 580-8531, Japan.
Abstract:
Hepatocellular carcinoma (HCC) is the third leading cause of cancer death worldwide. Additionally, the efficacy of targeted molecular therapies with multiple tyrosine kinase inhibitors is limited. In this study, we focused on the cellular signaling pathways common to diverse HCC cells and used quantitative reverse phase protein array (RPPA) and statistical analyses to elucidate the molecular mechanisms determining its malignancy. We examined the heterogeneity of 17 liver cancer cell lines by performing cluster analysis of their expression of CD90 and EpCAM cancer stem cell markers. Gaussian mixture model clustering identified three dominant clusters: CD90-positive and EpCAM-negative (CD90+), EpCAM-positive and CD90-negative (EpCAM+) and EpCAM-negative and CD90-negative (Neutral). A multivariate analysis by partial least squares revealed that the former two cell populations showed distinct patterns of protein expression and phosphorylation in the EGFR and EphA2 signaling pathways. The CD90+ cells exhibited higher abundance of AKT, EphA2 and its phosphorylated form at Ser897, whereas the EpCAM+ cells exhibited higher abundance of ERK, RSK and its phosphorylated form. This demonstrates that pro-oncogenic, ligand-independent EphA2 signaling plays a dominant role in CD90+ cells with higher motility and metastatic activity than EpCAM+ cells. We also showed that an AKT inhibitor reduced the proliferation and survival of CD90+ cells but did not affect those of EpCAM+ cells. Taken together, our results suggest that AKT activation may be a key pro-oncogenic regulator in HCC.
Insights
Hepatocellular carcinoma (HCC) involves diverse cell types. Targeting AKT activation may be key for treating CD90-positive HCC cells, which show higher motility and metastatic activity.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Hepatocellular carcinoma (HCC) is a major global cancer with limited targeted therapy efficacy.
- Understanding HCC cellular heterogeneity and signaling is crucial for developing new treatments.
Purpose of the Study:
- To investigate molecular mechanisms driving HCC malignancy by analyzing signaling pathways in distinct HCC cell populations.
- To identify potential therapeutic targets based on cellular heterogeneity.
Main Methods:
- Quantitative reverse phase protein array (RPPA) and statistical analyses were used.
- Cluster analysis of CD90 and EpCAM cancer stem cell markers identified three HCC cell clusters.
- Multivariate analysis (partial least squares) examined protein expression and phosphorylation patterns.
Main Results:
- Three HCC cell clusters were identified: CD90+, EpCAM+, and Neutral.
- CD90+ cells showed distinct EphA2 and AKT pathway activation, with higher motility and metastatic potential.
- EpCAM+ cells exhibited different signaling patterns, with higher ERK and RSK activation.
- An AKT inhibitor selectively reduced CD90+ cell proliferation and survival.
Conclusions:
- AKT activation is a key pro-oncogenic regulator in CD90+ HCC cells.
- Distinct signaling pathways in HCC subtypes suggest tailored therapeutic strategies.
- Targeting AKT may be a promising approach for CD90+ HCC subtypes.
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