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Published on: July 8, 2020
ROR2 has a protective role in melanoma by inhibiting Akt activity, cell-cycle progression, and proliferation
María Victoria Castro1,2, Gastón Alexis Barbero1,2, María Belén Villanueva1,2
1Centro de Estudios Biomédicos, Básicos, Aplicados y Desarrollo (CEBBAD), Universidad Maimónides, 1405, Buenos Aires, Argentina.
Background:
Receptor tyrosine kinase-like orphan receptor 2 (ROR2) is a Wnt5a receptor aberrantly expressed in cancer that was shown to either suppress or promote carcinogenesis in different tumor types. Our goal was to study the role of ROR2 in melanoma.
Methods:
Gain and loss-of-function strategies were applied to study the biological function of ROR2 in melanoma. Proliferation assays, flow cytometry, and western blotting were used to evaluate cell proliferation and changes in expression levels of cell-cycle and proliferation markers. The role of ROR2 in tumor growth was assessed in xenotransplantation experiments followed by immunohistochemistry analysis of the tumors. The role of ROR2 in melanoma patients was assessed by analysis of clinical data from the Leeds Melanoma Cohort.
Results:
Unlike previous findings describing ROR2 as an oncogene in melanoma, we describe that ROR2 prevents tumor growth by inhibiting cell-cycle progression and the proliferation of melanoma cells. The effect of ROR2 is mediated by inhibition of Akt phosphorylation and activity which, in turn, regulates the expression, phosphorylation, and localization of major cell-cycle regulators including cyclins (A, B, D, and E), CDK1, CDK4, RB, p21, and p27. Xenotransplantation experiments demonstrated that ROR2 also reduces proliferation in vivo, resulting in inhibition of tumor growth. In agreement with these findings, a higher ROR2 level favors thin and non-ulcerated primary melanomas with reduced mitotic rate and better prognosis.
Conclusion:
We conclude that the expression of ROR2 slows down the growth of primary tumors and contributes to prolonging melanoma survival. Our results demonstrate that ROR2 has a far more complex role than originally described.
Insights
Receptor tyrosine kinase-like orphan receptor 2 (ROR2) inhibits melanoma cell proliferation and tumor growth, contrary to previous oncogene findings. Higher ROR2 levels correlate with better melanoma prognosis and survival.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Receptor tyrosine kinase-like orphan receptor 2 (ROR2) is a Wnt5a receptor implicated in various cancers.
- ROR2's role in melanoma has been debated, with conflicting reports on its oncogenic potential.
Purpose of the Study:
- To elucidate the specific function of ROR2 in melanoma development and progression.
- To investigate the molecular mechanisms underlying ROR2's effects in melanoma cells.
Main Methods:
- Utilized gain- and loss-of-function strategies in melanoma models.
- Employed proliferation assays, flow cytometry, and Western blotting to assess cell cycle and proliferation markers.
- Conducted xenotransplantation experiments and analyzed clinical data from the Leeds Melanoma Cohort.
Main Results:
- ROR2 was found to inhibit melanoma cell proliferation and tumor growth by suppressing cell-cycle progression.
- ROR2's mechanism involves inhibiting Akt phosphorylation, impacting key cell-cycle regulators (cyclins, CDKs, RB, p21, p27).
- In vivo studies and patient data confirmed that higher ROR2 expression correlates with reduced tumor growth, thinner melanomas, and better prognosis.
Conclusions:
- ROR2 acts as a tumor suppressor in melanoma, slowing primary tumor growth and improving patient survival.
- The role of ROR2 in cancer is more complex than previously understood, with context-dependent functions.
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