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CD200 is induced by ERK and is a potential therapeutic target in melanoma. | LitMetric

AI Article Synopsis

  • Immune responses against metastatic melanoma (MM) are often weak despite effective therapies, mainly due to dendritic cells (DCs) being unable to activate T cells properly.
  • The N-RAS and B-RAF mutations in MM greatly increase the expression of CD200, a suppressor of DC function, which correlates with disease progression.
  • Targeting CD200 may enhance antitumor immunity by overcoming its immunosuppressive effects, suggesting it could be a valuable therapeutic target for improving treatment outcomes in MM.

Article Abstract

Immune-mediated antitumor responses occur in patients with metastatic melanoma (MM), and therapies designed to augment such responses are clinically beneficial. Despite the immunogenicity of melanoma, immunomodulatory therapies fail in the majority of patients with MM. An inability of DCs to sufficiently activate effector cells may, in part, underlie this failure of the antitumor response seen in most patients. In this work, we show that mutation of N-RAS or B-RAF, signature genetic lesions present in most MMs, potently induced the expression of cell-surface CD200, a repressor of DC function. Employing 2 independent, genome-wide microarray analyses, we identified CD200 as a highly dynamic, downstream target of RAS/RAF/MEK/ERK activation in melanoma. CD200 protein was similarly overexpressed in human melanoma cell lines and primary tumors. CD200 mRNA expression correlated with progression and was higher in melanoma than in other solid tumors or acute leukemia. Melanoma cell lines expressing endogenous CD200 repressed primary T cell activation by DCs, while knockdown of CD200 by shRNA abrogated this immunosuppressive effect. These data indicate that in addition to its effects on growth, survival, and motility, ERK activation in MM attenuates a host antitumor immune response, implicating CD200 and its interaction with the CD200 receptor as a potential therapeutic target for MM.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2075477PMC
http://dx.doi.org/10.1172/JCI32163DOI Listing

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