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多巴胺缺乏对韦弗小鼠大脑中NMDA受体亚基表达的差异影响。

Differential effect of dopamine deficiency on the expression of NMDA receptor subunits in the weaver mouse brain.

作者信息

Fragioudaki K, Kouvelas E D, Mitsacos A

机构信息

Department of Physiology, Faculty of Medicine, University of Patras, 26504 Patras, Greece.

出版信息

Eur J Neurosci. 2003 May;17(10):2056-64. doi: 10.1046/j.1460-9568.2003.02650.x.

Abstract

The weaver mutant mouse is characterized by degeneration of the dopaminergic mesencephalic neurons. The role of the dopaminergic system in the regulation of N-methyl-d-aspartate (NMDA) receptor subunit expression was addressed in the present study. In situ hybridization experiments were conducted to determine the expression levels of the NMDA receptor subunit mRNAs, z1, epsilon1 and epsilon2, in striatum, nucleus accumbens, olfactory tubercle and cerebral cortical regions of 26-day-, 3- and 6-month-old weaver mice. Data indicated statistically significant increases in z1 and epsilon2 mRNA levels in 6-month-old weaver striatum, whereas at the same age epsilon1 mRNA expression was decreased in all striatal regions, as well as in the cortex. In the 26-day-old weaver striatum and nucleus accumbens, statistically significant increases were observed in epsilon1 mRNA levels, whereas no changes were observed in the other two subunits. In the somatosensory cortex of 26-day-old weaver brain an increased expression of all three subunits was observed. The upregulation of NMDA receptor subunit expression observed in the somatosensory cortex can be attributed to a decreased activity of the glutamatergic thalamocortical pathway, following the degeneration of the nigrostriatal dopaminergic fibres. In the striatum, the present results demonstrate a differential control on the expression of z1 and epsilon2 subunits on the one hand, and epsilon1 subunit on the other. It is suggested that dopamine exerts a negative control on the expression of z1 and epsilon2 subunits, through a downregulation of transcription factors associated with the AP1 regulatory site, which is mediated by the activation of striatal dopamine D2 receptors.

摘要

织工突变小鼠的特征是多巴胺能中脑神经元变性。本研究探讨了多巴胺能系统在N-甲基-D-天冬氨酸(NMDA)受体亚基表达调节中的作用。进行原位杂交实验以确定26日龄、3月龄和6月龄织工小鼠的纹状体、伏隔核、嗅结节和大脑皮质区域中NMDA受体亚基mRNA(z1、ε1和ε2)的表达水平。数据表明,6月龄织工小鼠纹状体中z1和ε2 mRNA水平有统计学意义的升高,而在相同年龄时,所有纹状体区域以及皮质中的ε1 mRNA表达均降低。在26日龄织工小鼠的纹状体和伏隔核中,ε1 mRNA水平有统计学意义的升高,而其他两个亚基未观察到变化。在26日龄织工小鼠脑的体感皮质中,观察到所有三个亚基的表达均增加。体感皮质中观察到的NMDA受体亚基表达上调可归因于黑质纹状体多巴胺能纤维变性后谷氨酸能丘脑皮质通路活性降低。在纹状体中,目前的结果表明一方面对z1和ε2亚基的表达有差异控制,另一方面对ε1亚基有差异控制。有人提出,多巴胺通过下调与AP1调节位点相关的转录因子,对z1和ε2亚基的表达施加负控制,这是由纹状体多巴胺D2受体的激活介导的。

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