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lüll Augmentation of effects of interferon-stimulated genes by reversal of epigenetic silencing: potential application to melanoma Borden ECCytokine Growth Factor Rev 2007[Oct]; 18 (5-6): 491-501Increased expression of genes, silenced by methylation of their promoters, could have relevance for increasing effects of not only interferons (IFNs) but also APO2L/TRAIL, cytotoxics and immunotherapeutics for melanoma and other malignancies. A resistant melanoma cell line, A375, lacked APO2L/TRAIL or apoptosis induction by either IFN-alpha2 or IFN-beta. However, apoptosis was induced by IFNs in A375 cells by 5-aza,2'-deoxycytidine (5-Aza-dC), evaluated based upon the postulate that promoter methylation might be silencing pro-apopoptotic IFN-stimulated genes (ISGs). RASSF1A, commonly methylated at high frequency in many tumors including melanoma, which we discovered to be also an IFN-regulated gene, was increased by 5-Aza-dC. RASSF1A was important in enhancing apoptotic effects of not only IFNs and APO2L/TRAIL but also cisplatin. Unraveling epigenetic regulatory mechanisms, as yet only partially identified, will result in new biological insights and improved strategies for therapeutic use of IFNs or ISGs such as APO2L/TRAIL.|Animals[MESH]|Antiviral Agents/*pharmacology[MESH]|Apoptosis[MESH]|Gene Expression Regulation, Neoplastic/*drug effects[MESH]|Gene Silencing[MESH]|Humans[MESH]|Interferons/*pharmacology[MESH]|Melanoma/drug therapy/*genetics/metabolism[MESH] |