Cancer Research · 2004 · 121 citations · 12 references
BRAF mutations result in constitutively active BRAF kinase activity and increased extracellular signal-regulated kinase (ERK) signaling and cell proliferation. Initial studies have shown that BRAF mutations occur at a high frequency in melanocytic nevi and metastatic lesions, but recent data have revealed much lower incidence of these mutations in early-stage melanoma, implying that other factors may contribute to melanoma pathogenesis in a wild-type (WT) BRAF context. To identify such contributing factors, we used microarray gene expression profiling to screen for differences in gene expression between a panel of melanocytic and melanoma cell lines with WT BRAF and a group of melanoma cell lines with the V599E BRAF mutation. We found that SPRY2, an inhibitor homologous to SPRY4, which was previously shown to suppress Ras/ERK signaling via direct binding to Raf-1, had reduced expression in WT BRAF cells. Using small interfering RNA-mediated SPRY2 knockdown, we showed that SPRY2 acts as an inhibitor of ERK signaling in melanocytes and WT BRAF melanoma cells, but not in cell lines with the V599E mutation. We also show that SPRY2 and SPRY4 directly bind WT BRAF but not the V599E and other exon 15 BRAF mutants. These data suggest that SPRY2, an inhibitor of ERK signaling, may be bypassed in melanoma cells either by down-regulation of its expression in WT BRAF cells, or by the presence of the BRAF mutation.
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Mutations of the BRAF gene in human cancer
Helen Davies, Graham R. Bignell, Charles Cox et al. · Nature · 2002 · 10.6K citations · Full text
Mechanism of Activation of the RAF-ERK Signaling Pathway by Oncogenic Mutations of B-RAF
Paul Wan, Mathew J. Garnett, S. Mark Roe et al. · Cell · 2004 · 2.8K citations · Full text
Oncogenic Mutations, Signal Transduction, Signaling Pathway +9
BRAF and RAS mutations in human lung cancer and melanoma.
Marcia S. Brose, Patrícia Volpe, Michael D. Feldman et al. · PubMed · 2002 · 1K citations