An actionable pathway connecting NFATc2 to FOXM1 and EZH2 controls the MITFlo/invasive melanoma phenotype
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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE101323
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Dissection of melanoma heterogeneity through gene expression profiling has led to the identification of two major phenotypes, conventionally defined as “MITF high / proliferative” and “AXL high / invasive”. Tumors or single melanoma cells characterized by a predominant AXL-related gene program show enhanced expression of sets of genes involved in motility, invasion and regulation of epithelial-mesenchymal transition (EMT), while these genes are downregulated in tumors or cells with a predominant MITF-related gene program. The activation of the AXLhi/MITFlo invasive gene program in melanoma is characterized by aberrant expression of transcription factors (TFs) involved in the embryonic EMT process. Additional master genes involved in promoting melanoma growth and invasive state have been identified within the family of epigenetic regulators. Two of these genes, RNF2 and EZH2, components of the polycomb repressive complexes 1 and 2, act by epigenetically silencing tumor suppressors that in turn regulate the invasive and EMT-like phenotype of melanoma cells. Additional master genes involved in promoting melanoma growth and invasive state have been identified within the family of epigenetic regulators. Two of these genes, RNF2 and EZH2, components of the polycomb repressive complexes 1 and 2, act by epigenetically silencing tumor suppressors that in turn regulate the invasive and EMT-like phenotype of melanoma cells. Here we provide evidence for a new actionable pathway that controls melanoma EMT-like/invasive phenotype. We show that in MITFlo melanomas, the TF NFATc2 controls the EMT-like transcriptional program, the invasive ability of neoplastic cells, as well as in-vitro and in-vivo growth, through a pathway that functionally links c-myc to FOXM1 and EZH2. Targeting of NFATc2, FOXM1 or EZH2 inhibited melanoma migratory and invasive activity. Moreover, pharmacological co-targeting of NFATc2 and EZH2 promoted apoptosis of BRAF-mutant melanomas with intrinsic resistance to BRAF inhibition. The human melanoma cell lines Ctrl_shRNA 1, Ctrl_shRNA 2, NFATc2_shRNA 1, NFATc2_ shRNA 2 were established in our laboratory after NFATc2 silencing with shRNA in melanoma cell line 21158, derived from a a surgical specimens. Cells were routinely maintained in RPMI medium 1640 supplemented with 10% FBS and 2 mM glutamine. Cells were maintained at 37°C in a water-saturated atmosphere of 5% CO2 in air. 6x10^6 cells were seeded in 75 cm2 flasks. Each treatment or combination was performed in triplicate. The cells were collected and RNA extracted.
创建时间:
2021-07-25



