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视网膜Müller神经胶质细胞中胱氨酸/谷氨酸反向转运体的表达:对DL-α-氨基己二酸毒性的影响

Cystine/glutamate antiporter expression in retinal Müller glial cells: implications for DL-alpha-aminoadipate toxicity.

作者信息

Kato S, Ishita S, Sugawara K, Mawatari K

机构信息

Department of Neurobiology, NIRI, School of Medicine, University of Kanazawa, Japan.

出版信息

Neuroscience. 1993 Nov;57(2):473-82. doi: 10.1016/0306-4522(93)90080-y.

Abstract

A cytotoxicity of glutamate or related amino acids (10 mM) mediated by a cystine/glutamate antiporter (system Xc) has recently been demonstrated in N18 neuroblastoma-rat retina hybrid (N18RE105) cells and C6 glioma cells. The antiporter usually transports glutamate outside and cystine inside, thereby maintaining cellular concentrations of glutathione. High concentrations of glutamate inhibit cystine uptake and lead to depletion of cellular levels of glutathione. Among related amino acids, DL-alpha-aminoadipic acid (DL-alpha-AAA), which is well known as a selective gliotoxin in the retina, is also toxic to these cells. However, this does not explain why DL-alpha-AAA acts gliospecifically on the retina. To answer this question we first examined the effects of DL-alpha-AAA on the [35S]cystine uptake with parental N18 neuroblastoma cells and rat retina of the hybrid cells. DL-alpha-AAA showed a competitive inhibition of [35S]cystine uptake in the rat retina but not in the N18 cells. Such a competitive inhibition of cystine uptake by DL-alpha-AAA could also be seen in the carp retina. The cystine uptake with carp retina was mainly Na(+)-independent and Cl(-)-dependent as already described as a characteristic ion dependency of the Xc antiporter. We next examined the effects of exogenous cystine on the glutamate release from the retina. Cystine (1 mM) actually induced a glutamate release approximately twice that of the control. Furthermore, the glutamate release induced by cystine was also Na(+)-independent and Cl(-)-dependent, and was blocked by DL-alpha-AAA. An autoradiogram of [35S]cystine uptake in the carp retina showed typical radial glial Müller cells. A large incorporation of [35S]cystine into retinal glutathione fraction was detected by a high pressure liquid chromatography method during a 1-4-h incubation. A significant or large decrease of retinal levels of glutathione was observed one day ater an intravitreal injection of 8 mumol DL-alpha-AAA or L-alpha-AAA, respectively. Buthionine sulfoximine (2.5 mumol), a specific inhibitor of glutathione synthesis, induced a large decrease of retinal levels of glutathione and a loss of electroretinographic b-wave 20-30 h after treatment. Taken together, our present data with rat and carp retinas strongly indicate that the expression of cystine/glutamate antiporter is enriched in the retina, particularly in the glial Müller cells which have a rapid turnover pool for glutathione. The gliotoxin DL-alpha-AAA inhibits cystine uptake through this antiporter on the glial cells and elicits reduction of cellular levels of glutathione.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

胱氨酸/谷氨酸反向转运体(系统Xc)介导的谷氨酸或相关氨基酸(10 mM)的细胞毒性最近已在N18神经母细胞瘤-大鼠视网膜杂交(N18RE105)细胞和C6胶质瘤细胞中得到证实。该反向转运体通常将谷氨酸转运到细胞外,将胱氨酸转运到细胞内,从而维持细胞内谷胱甘肽的浓度。高浓度的谷氨酸会抑制胱氨酸摄取,并导致细胞内谷胱甘肽水平降低。在相关氨基酸中,DL-α-氨基己二酸(DL-α-AAA),即视网膜中众所周知的选择性神经胶质毒素,对这些细胞也有毒性。然而,这并不能解释为什么DL-α-AAA对视网膜具有神经胶质特异性作用。为了回答这个问题,我们首先研究了DL-α-AAA对亲代N18神经母细胞瘤细胞和杂交细胞的大鼠视网膜中[35S]胱氨酸摄取的影响。DL-α-AAA对大鼠视网膜中[35S]胱氨酸摄取表现出竞争性抑制作用,但对N18细胞则无此作用。在鲤鱼视网膜中也可以看到DL-α-AAA对胱氨酸摄取的这种竞争性抑制作用。鲤鱼视网膜中的胱氨酸摄取主要不依赖于Na(+)且依赖于Cl(-),正如已经描述的Xc反向转运体的特征性离子依赖性。接下来,我们研究了外源性胱氨酸对视网膜谷氨酸释放的影响。胱氨酸(1 mM)实际上诱导的谷氨酸释放量约为对照组的两倍。此外,胱氨酸诱导的谷氨酸释放也不依赖于Na(+)且依赖于Cl(-),并被DL-α-AAA阻断。鲤鱼视网膜中[35S]胱氨酸摄取的放射自显影片显示出典型的放射状神经胶质Müller细胞。在1-4小时的孵育过程中,通过高压液相色谱法检测到大量的[35S]胱氨酸掺入视网膜谷胱甘肽组分中。在玻璃体内分别注射8 μmol DL-α-AAA或L-α-AAA一天后,观察到视网膜中谷胱甘肽水平显著或大幅下降。丁硫氨酸亚砜胺(2.5 μmol),一种谷胱甘肽合成的特异性抑制剂,在处理后20-30小时诱导视网膜中谷胱甘肽水平大幅下降,并导致视网膜电图b波消失。综上所述,我们目前关于大鼠和鲤鱼视网膜的数据强烈表明,胱氨酸/谷氨酸反向转运体的表达在视网膜中富集,特别是在具有快速周转的谷胱甘肽池的神经胶质Müller细胞中。神经胶质毒素DL-α-AAA通过该反向转运体抑制神经胶质细胞上的胱氨酸摄取,并引发细胞内谷胱甘肽水平降低。(摘要截短至400字)

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