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MARCKS functions as a novel growth suppressor in cells of melanocyte origin
G Brooks1, S F Brooks, M W Goss
1Rayne Institut, St Thomas' Hospital, London, UK.
Abstract:
Protein kinase C (PKC) plays a pivotal role in modulating the growth of melanocytic cells in culture. We have shown previously that a major physiological substrate of PKC, the 80 kDa myristoylated alanine-rich C-Kinase substrate (MARCKS), can be phosphorylated in quiescent, non-tumorigenic melanocytes exposed transiently to a biologically active phorbol ester, but cannot be phosphorylated in phorbol ester-treated, syngeneic malignant melanoma cells. Despite its ubiquitous distribution, the function of MARCKS in cell growth and transformation remains to be demonstrated clearly. We report here that MARCKS mRNA and protein levels are down-regulated significantly in the spontaneously derived murine B16 melanoma cell line compound with syngeneic normal Mel-ab melanocytes. In contrast, the tumourigenic v-Ha-ras-transformed melanocytic line, LTR Ras 2, showed a high basal level of MARCKS phosphorylation which was not enhanced by treatment of cells with phorbol ester. Furthermore, protein levels of MARCKS in LTR Ras 2 cells were similar to those expressed in Mel-ab melanocytes. However, in four out of six murine tumour cell lines investigated, levels of MARCKS protein were barely detectable. Transfection of B16 cells with a plasmid containing the MARCKS cDNA in the sense orientation produced two neomycin-resistant clones displaying reduced proliferative capacity and decreased anchorage-independent growth compared with control cells. In contrast, transfection with the antisense MARCKS construct produced many colonies which displayed enhanced growth and transforming potential compared with control cells. Thus, MARCKS appears to act as a novel growth suppressor in the spontaneous transformation of cells of melanocyte origin and may play a more general role in the tumour progression of other carcinoma.
Insights
Myristoylated alanine-rich C-Kinase substrate (MARCKS) acts as a growth suppressor in melanocyte transformation. Down-regulation of MARCKS promotes tumor progression, while its restoration inhibits melanoma cell growth.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Protein kinase C (PKC) influences melanocytic cell growth.
- Myristoylated alanine-rich C-Kinase substrate (MARCKS) is a key PKC substrate.
- MARCKS's role in cell growth and transformation requires further elucidation.
Purpose of the Study:
- To investigate the function of MARCKS in melanocyte transformation and tumor progression.
- To determine MARCKS expression levels in normal and malignant melanocytic cells.
- To assess the impact of modulating MARCKS levels on melanoma cell growth and transformation.
Main Methods:
- Quantitative analysis of MARCKS mRNA and protein levels in melanocytic cell lines.
- Phosphorylation assays in response to phorbol ester treatment.
- Gene transfection studies using sense and antisense MARCKS constructs in B16 melanoma cells.
Main Results:
- MARCKS expression is significantly down-regulated in spontaneous murine melanoma cells (B16) compared to normal melanocytes.
- Tumorigenic melanocytic cells (LTR Ras 2) exhibit high basal MARCKS phosphorylation.
- Restoration of MARCKS expression in B16 cells reduced proliferation and anchorage-independent growth, while antisense transfection enhanced these properties.
Conclusions:
- MARCKS functions as a novel growth suppressor in the spontaneous transformation of melanocytes.
- Altered MARCKS expression is implicated in melanoma development and progression.
- MARCKS may play a broader role in the tumor progression of other carcinomas.