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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Downregulation of CCN3 expression as a potential mechanism for melanoma progression
M Fukunaga-Kalabis1, G Martinez, S M Telson
1Molecular and Cellular Oncogenesis Program, The Wistar Institute, Philadelphia, PA 19104, USA.
Abstract:
Coculture of human melanocytes with keratinocytes upregulates CCN3, a matricellular protein critical to maintenance of normal homeostasis of melanocytes in the skin. CCN3 affects two fundamental features of melanocyte physiology: it inhibits melanocyte proliferation and stimulates their adhesion to the basement membrane. Here we report that expression of CCN3 is downregulated in advanced melanomas. Aggressive melanoma cell lines did not respond to treatment with CCN3 inducers, such as interleukin-1beta (IL-1beta), while less aggressive melanoma cell lines responded similarly to melanocytes. Immunostaining analyses revealed that CCN3 was present in melanoma cells close to the epidermal-dermal interface, but not in melanoma cells that had invaded deep into the dermis or had metastasized to lymph nodes. Contrary to our expectations, overexpression of CCN3 in 1205Lu metastatic melanoma cells did not affect their adhesion to collagen IV. However, CCN3 decreased the transcription and activation of matrix metalloproteinases and suppressed the invasion of 1205Lu melanoma cells. These results suggest that the lack of CCN3 in advanced melanoma cells contributes to their invasive phenotype. Whereas major matricellular proteins, such as osteopontin, tenascin or secreted protein acidic and rich in cysteine (SPARC), are strongly upregulated in melanoma cells; CCN3 is the first member of this family that is downregulated.
Insights
Downregulation of CCN3, a protein crucial for melanocyte homeostasis, is observed in advanced melanomas. Loss of CCN3 expression correlates with increased melanoma cell invasion, suggesting a role in melanoma progression.
Area of Science:
- Dermatology
- Cancer Biology
- Molecular Biology
Background:
- Coculture of human melanocytes and keratinocytes upregulates CCN3, a matricellular protein vital for melanocyte homeostasis.
- CCN3 regulates melanocyte proliferation and adhesion to the basement membrane.
- CCN3 is downregulated in advanced melanomas, unlike other matricellular proteins.
Purpose of the Study:
- To investigate the role of CCN3 in melanoma progression.
- To determine the effect of CCN3 on melanoma cell invasion and matrix metalloproteinase activity.
Main Methods:
- Immunostaining analyses of CCN3 expression in melanoma tissues.
- Treatment of melanoma cell lines with CCN3 inducers (e.g., interleukin-1beta).
- Overexpression of CCN3 in metastatic melanoma cells (1205Lu) to assess effects on adhesion and invasion.
Main Results:
- Advanced melanoma cell lines showed reduced response to CCN3 inducers compared to less aggressive lines.
- CCN3 was present in melanoma cells near the epidermal-dermal interface but absent in invasive/metastatic cells.
- CCN3 overexpression in 1205Lu cells did not alter collagen IV adhesion but suppressed matrix metalloproteinase transcription and activation, reducing invasion.
Conclusions:
- The downregulation of CCN3 in advanced melanoma cells contributes to their invasive phenotype.
- CCN3 acts as a suppressor of melanoma cell invasion, potentially through regulating matrix metalloproteinases.
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