牛磺酸转运蛋白基因敲除可引起小鼠脑内GABA(A)、kainate和AMPA的变化,但不影响NMDA受体结合。

Evelyn Oermann, Ulrich Warskulat, Birgit Heller-Stilb, Dieter Häussinger, Karl Zilles
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引用次数: 14

摘要

本研究的目的是确定敲除小鼠的牛磺酸转运蛋白基因是否会影响大脑中GABA(A)、kainate、AMPA和NMDA受体的密度。采用定量受体放射自显像技术对6只纯合子牛磺酸转运蛋白基因敲除小鼠和6只野生型动物的尾壳核、海马及其亚区和小脑进行了检测。为了发现Bmax和K(D)值可能的组间差异,对所有四种受体类型进行了饱和度研究。牛磺酸转运蛋白基因敲除动物海马齿状回分子层和小脑GABA(A)受体密度显著高于WT动物。敲除动物的尾壳核区、海马CA1区和门区以及小脑的盐酸盐受体密度显著升高。这些小鼠的尾壳核和小脑也含有显著较高的AMPA受体密度。然而,在NMDA受体密度方面,敲除动物和WT动物之间没有显著差异。脑牛磺酸水平的降低与GABA(A), kainate和AMPA受体密度的增加有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Taurine-transporter gene knockout-induced changes in GABA(A), kainate and AMPA but not NMDA receptor binding in mouse brain.

The aim of this study was to determine whether the knockout of the taurine-transporter gene in the mouse affects the densities of GABA(A), kainate, AMPA and NMDA receptors in the brain. The caudate-putamen, the hippocampus and its subregions, and the cerebellum of six homozygous taurine-transporter gene knockout mice and six wild-type (WT) animals were examined by means of quantitative receptor autoradiography. Saturation studies were carried out for all four receptor types in order to find possible intergroup differences in Bmax and K(D) values. Taurine-transporter gene knockout animals showed significantly higher GABA(A) receptor densities in the molecular layer of the hippocampal dentate gyrus and in the cerebellum than did WT animals. The densities of kainate receptors were significantly higher in the caudate-putamen, the CA1 and hilus regions of the hippocampus and in the cerebellum of knockout animals. The caudate-putamen and cerebellum of these mice also contained significantly higher AMPA receptor densities. However, there were no significant differences between knockout and WT animals concerning the densities of NMDA receptors. Reduced brain taurine levels are associated with increased GABA(A), kainate and AMPA receptor densities in some of the regions we examined.

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