Association of MITF and other melanosome-related proteins with chemoresistance in melanoma tumors and cell lines

小眼畸形相关转录因子 达卡巴嗪 黑色素瘤 癌症研究 基因敲除 黑素体 细胞培养 替莫唑胺 生物 医学 黑色素 转录因子 基因 遗传学 胶质母细胞瘤
作者
Carolina Johansson,Alireza Azimi,Marianne Frostvik Stolt,Seyedmehdi Shojaee,Henning Wiberg,Eva Grafström,Johan Hansson,Suzanne Egyházi Brage
出处
期刊:Melanoma Research [Lippincott Williams & Wilkins]
卷期号:23 (5): 360-365 被引量:24
标识
DOI:10.1097/cmr.0b013e328362f9cd
摘要

Previous studies in cell lines have suggested a role for melanosomes and related protein trafficking pathways in melanoma drug response. We have investigated the expression of six proteins related to melanosomes and melanogenesis (MITF, GPR143, gp100/PMEL, MLANA, TYRP1, and RAB27A) in pretreatment metastases from melanoma patients (n = 52) with different response to dacarbazine/temozolomide. Microphthalmia-associated transcription factor (MITF) and G-protein coupled receptor 143 (GPR143) showed significantly higher expression in nonresponders compared with responders. The premelanosome protein (gp100/PMEL) has been indicated previously in resistance to cisplatin in melanoma cells, but the expression levels of gp100/PMEL showed no association with response to dacarbazine/temozolomide in our clinical material. We also investigated the effects on chemosensitivity of siRNA inhibition of gp100/PMEL in the MNT-1 melanoma cell line. As expected from the study of the tumor material, no effect was detected with respect to response to temozolomide. However, knockdown of gp100/PMEL sensitized the cells to both paclitaxel and cisplatin. Overall, our results suggest that MITF, and several MITF-regulated factors, are associated with resistance to chemotherapy in melanoma and that different MITF targets can be of importance for different drugs.
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