Nishikiori Nami, Watanabe Megumi, Sato Tatsuya, Furuhashi Masato, Okura Masae, Hida Tokimasa, Uhara Hisashi, Ohguro Hiroshi
Department of Ophthalmology, Sapporo Medical University, S1W17, Chuo-ku, Spporo 060-8556, Japan.
Department of Cardiovascular, Renal and Metabolic Medicine, Sapporo Medical University, S1W17, Chuo-ku, Spporo 060-8556, Japan.
Cancers (Basel). 2024 Jan 7;16(2):263. doi: 10.3390/cancers16020263.
To study the inhibitory effects on microphthalmia-associated transcription factor (MITF)-related biological aspects in malignant melanomas (MMs) in the presence or absence of the low-molecular MITF specific inhibitor ML329, cell viability, cellular metabolic functions, and three-dimensional (3D) spheroid formation efficacy were compared among MM cell lines including SK-mel-24, A375, dabrafenib- and trametinib-resistant A375 (A375DT), and WM266-4. Upon exposure to 2 or 10 μM of ML329, cell viability was significantly decreased in WM266-4, SK-mel-24, and A375DT cells, but not A375 cells, in a dose-dependent manner, and these toxic effects of ML329 were most evident in WM266-4 cells. Extracellular flux assays conducted using a Seahorse bioanalyzer revealed that treatment with ML329 increased basal respiration, ATP-linked respiration, proton leakage, and non-mitochondrial respiration in WM266-4 cells and decreased glycolytic function in SK-mel-24 cells, whereas there were no marked effects of ML329 on A375 and A375DT cells. A glycolytic stress assay under conditions of high glucose concentrations also demonstrated that the inhibitory effect of ML329 on the glycolytic function of WM266-4 cells was dose-dependent. In addition, ML329 significantly decreased 3D-spheroid-forming ability, though the effects of ML329 were variable among the MM cell lines. Furthermore, the mRNA expression levels of selected genes, including as a possible regulator of 3D spheroid formation, and as oncogenic-signaling-related factors, as the main regulator of mitochondrial biogenesis, and as a major hypoxia transcriptional regulator, fluctuated among the MM cell lines, possibly supporting the diverse ML329 effects mentioned above. The findings of diverse ML329 effects on various MM cell lines suggest that MITF-associated biological activities are different among various types of MM.
为研究在存在或不存在低分子MITF特异性抑制剂ML329的情况下,其对恶性黑色素瘤(MM)中与小眼畸形相关转录因子(MITF)相关生物学特性的抑制作用,对包括SK-mel-24、A375、达拉非尼和曲美替尼耐药的A375(A375DT)以及WM266-4在内的MM细胞系的细胞活力、细胞代谢功能和三维(3D)球体形成效率进行了比较。暴露于2或10 μM的ML329后,WM266-4、SK-mel-24和A375DT细胞的细胞活力以剂量依赖性方式显著降低,但A375细胞未降低,且ML329的这些毒性作用在WM266-4细胞中最为明显。使用海马生物分析仪进行的细胞外通量分析显示,用ML329处理可增加WM266-4细胞的基础呼吸、ATP相关呼吸、质子泄漏和非线粒体呼吸,并降低SK-mel-24细胞的糖酵解功能,而ML329对A375和A375DT细胞无明显影响。在高葡萄糖浓度条件下进行的糖酵解应激分析也表明,ML329对WM266-4细胞糖酵解功能的抑制作用是剂量依赖性的。此外,ML329显著降低了3D球体形成能力,尽管ML329的作用在MM细胞系中有所不同。此外,包括作为3D球体形成可能调节因子的 、作为致癌信号相关因子的 、作为线粒体生物发生主要调节因子的 以及作为主要缺氧转录调节因子的 等选定基因的mRNA表达水平在MM细胞系中波动,这可能支持了上述ML329的多种作用。ML329对各种MM细胞系的多种作用结果表明,不同类型的MM中与MITF相关的生物学活性不同。