AI Article Synopsis

  • Metastatic melanoma is highly aggressive and remains difficult to treat despite advances in therapy, with C-MER proto-oncogene tyrosine kinase (MERTK) playing a significant role in disease progression.
  • Research shows that MERTK expression is highest in metastatic melanomas compared to primary melanomas and nevi, and its overexpression is frequent in melanoma cell lines without correlating to BRAF or RAS mutations.
  • Targeting MERTK with inhibition techniques and specific small-molecule drugs has shown promising results in reducing melanoma cell growth, signaling pathways, and tumor size, highlighting MERTK as a potential therapeutic target.

Article Abstract

Metastatic melanoma is one of the most aggressive forms of cutaneous cancers. Although recent therapeutic advances have prolonged patient survival, the prognosis remains dismal. C-MER proto-oncogene tyrosine kinase (MERTK) is a receptor tyrosine kinase with oncogenic properties that is often overexpressed or activated in various malignancies. Using both protein immunohistochemistry and microarray analyses, we demonstrate that MERTK expression correlates with disease progression. MERTK expression was highest in metastatic melanomas, followed by primary melanomas, while the lowest expression was observed in nevi. Additionally, over half of melanoma cell lines overexpressed MERTK compared with normal human melanocytes; however, overexpression did not correlate with mutations in BRAF or RAS. Stimulation of melanoma cells with the MERTK ligand GAS6 resulted in the activation of several downstream signaling pathways including MAPK/ERK, PI3K/AKT, and JAK/STAT. MERTK inhibition via shRNA reduced MERTK-mediated downstream signaling, reduced colony formation by up to 59%, and diminished tumor volume by 60% in a human melanoma murine xenograft model. Treatment of melanoma cells with UNC1062, a novel MERTK-selective small-molecule tyrosine kinase inhibitor, reduced activation of MERTK-mediated downstream signaling, induced apoptosis in culture, reduced colony formation in soft agar, and inhibited invasion of melanoma cells. This work establishes MERTK as a therapeutic target in melanoma and provides a rationale for the continued development of MERTK-targeted therapies.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3639697PMC
http://dx.doi.org/10.1172/JCI67816DOI Listing

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