Tomi Masatoshi, Funaki Takeshi, Abukawa Hayato, Katayama Kazunori, Kondo Tetsu, Ohtsuki Sumio, Ueda Masatsugu, Obinata Masuo, Terasaki Tetsuya, Hosoya Ken-Ichi
Faculty of Pharmaceutical Sciences, Toyama Medical and Pharmaceutical University, Toyama, Japan.
Glia. 2003 Sep;43(3):208-17. doi: 10.1002/glia.10253.
The purpose of the present study was to elucidate the expression and regulation of the L-cystine transporter, system x(c) (-), in Müller cells. In this study, newly developed conditionally immortalized rat Müller cell lines (TR-MUL) from transgenic rats harboring the temperature-sensitive SV 40 large T-antigen gene were used as an in vitro model. TR-MUL cells express large T-antigen and grow well at 33 degrees C with a doubling time of 30 h, but do not grow at 39 degrees C. TR-MUL cells express typical Müller cell markers such as S-100, glutamine synthetase, and EAAT1/GLAST, whereas EAAT2/GLT-1 and EAAT5 are not detected. TR-MUL cells also exhibit little or no expression of glial fibrillary acidic protein. We found that TR-MUL5 cells exhibited [(14)C]L-cystine uptake activity and expressed xCT and 4F2hc, which involve system x(c) (-). The uptake of [(14)C]L-cystine was significantly inhibited by L-glutamic acid and L-aspartic acid, whereas L-leucine had no effect. Following diethyl maleate (DEM) treatment, the glutathione concentration in TR-MUL5 cells was reduced in the first 24 h, then gradually recovered for more than 24 h. The L-cystine uptake rate and the xCT expression level in TR-MUL5 cells were enhanced by DEM treatment. In contrast, the 4F2hc expression level was unchanged. In conclusion, TR-MUL cells have the properties of Müller cells and exhibit system x(c) (-)-mediated L-cystine uptake activity. The oxidative stress conditions following DEM treatment activate L-cystine transport in TR-MUL cells due to the enhanced transcription of the xCT gene.
本研究的目的是阐明L-胱氨酸转运体x(c)(-)系统在 Müller 细胞中的表达及调控机制。在本研究中,我们使用了来自携带温度敏感型SV40大T抗原基因的转基因大鼠的新开发的条件永生化大鼠Müller细胞系(TR-MUL)作为体外模型。TR-MUL细胞表达大T抗原,在33℃时生长良好,倍增时间为30小时,但在39℃时不生长。TR-MUL细胞表达典型的Müller细胞标志物,如S-100、谷氨酰胺合成酶和EAAT1/GLAST,而未检测到EAAT2/GLT-1和EAAT5。TR-MUL细胞也几乎不表达或不表达胶质纤维酸性蛋白。我们发现TR-MUL5细胞表现出[(14)C]L-胱氨酸摄取活性,并表达参与x(c)(-)系统的xCT和4F2hc。[(14)C]L-胱氨酸的摄取受到L-谷氨酸和L-天冬氨酸的显著抑制,而L-亮氨酸则无影响。经马来酸二乙酯(DEM)处理后,TR-MUL5细胞中的谷胱甘肽浓度在最初24小时内降低,然后在超过24小时的时间里逐渐恢复。DEM处理可提高TR-MUL5细胞中L-胱氨酸的摄取率和xCT的表达水平。相比之下,4F2hc的表达水平未发生变化。总之,TR-MUL细胞具有Müller细胞的特性,并表现出x(c)(-)系统介导的L-胱氨酸摄取活性。DEM处理后的氧化应激条件通过增强xCT基因的转录激活了TR-MUL细胞中的L-胱氨酸转运。