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星形胶质细胞中锌转运体-1的表达可抵御锌毒性并减缓细胞内锌的积累。

ZnT-1 expression in astroglial cells protects against zinc toxicity and slows the accumulation of intracellular zinc.

作者信息

Nolte Christiane, Gore Ariel, Sekler Israel, Kresse Wolfgang, Hershfinkel Michal, Hoffmann Anja, Kettenmann Helmut, Moran Arie

机构信息

Max-Delbrück-Center for Molecular Medicine, Berlin, Germany.

出版信息

Glia. 2004 Nov 1;48(2):145-55. doi: 10.1002/glia.20065.

Abstract

Zinc ions are emerging as an important factor in the etiology of neurodegenerative disorders and in brain damage resulting from ischemia or seizure activity. High intracellular levels of zinc are toxic not only to neurons but also to astrocytes, the major population of glial cells in the brain. In the present study, the role of ZnT-1 in reducing zinc-dependent cell damage in astrocytes was assessed. Zinc-dependent cell damage was apparent within 2 h of exposure to zinc, and occurred within a narrow range of approximately 200 microM. Pretreatment with sublethal concentrations of zinc rendered astrocytes less sensitive to toxic zinc levels, indicating that preconditioning protects astrocytes from zinc toxicity. Fluorescence cell imaging revealed a steep reduction in intracellular zinc accumulation for the zinc-pretreated cells mediated by L-type calcium channels. Heterologous expression of ZnT-1 had similar effects; intracellular zinc accumulation was slowed down and the sensitivity of astrocytes to toxic zinc levels was reduced, indicating that this is specifically mediated by ZnT-1 expression. Immunohistochemical analysis demonstrated endogenous ZnT-1 expression in cultured astroglia, microglia, and oligodendrocytes. Pretreatment with zinc induced a 4-fold increase in the expression of the putative zinc transporter ZnT-1 in astroglia as shown by immunoblot analysis. The elevated ZnT-1 expression following zinc priming or after heterologous expression of ZnT-1 may explain the reduced zinc accumulation and the subsequent reduction in sensitivity toward toxic zinc levels. Induction of ZnT-1 may play a protective role when mild episodes of stroke or seizures are followed by a massive brain insult.

摘要

锌离子正成为神经退行性疾病病因以及缺血或癫痫活动导致脑损伤的一个重要因素。细胞内锌含量过高不仅对神经元有毒,对星形胶质细胞(大脑中主要的神经胶质细胞群体)也有毒性。在本研究中,评估了锌转运体1(ZnT-1)在减少星形胶质细胞中锌依赖性细胞损伤方面的作用。锌依赖性细胞损伤在接触锌后2小时内明显出现,且发生在约200微摩尔的狭窄范围内。用亚致死浓度的锌进行预处理可使星形胶质细胞对有毒锌水平的敏感性降低,这表明预处理可保护星形胶质细胞免受锌毒性影响。荧光细胞成像显示,由L型钙通道介导,锌预处理细胞的细胞内锌积累急剧减少。ZnT-1的异源表达也有类似效果;细胞内锌积累减缓,星形胶质细胞对有毒锌水平的敏感性降低,这表明这是由ZnT-1表达特异性介导的。免疫组织化学分析证明,在培养的星形胶质细胞、小胶质细胞和少突胶质细胞中有内源性ZnT-1表达。免疫印迹分析显示,用锌预处理可使星形胶质细胞中假定的锌转运体ZnT-1的表达增加4倍。锌预刺激后或ZnT-1异源表达后ZnT-1表达的升高可能解释了锌积累的减少以及随后对有毒锌水平敏感性的降低。当轻度中风或癫痫发作后紧接着发生大规模脑损伤时,ZnT-1的诱导可能起到保护作用。

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