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Vesicular Glutamate Transporter VGLUT1 Has a Role in Hippocampal Long-Term Potentiation and Spatial Reversal Learning

机译:囊泡谷氨酸转运蛋白VGLUT1在海马长期增强和空间逆转学习中发挥作用。

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Vesicular glutamate transporters 1 and 2 (VGLUT1, VGLUT2) show largely complementary distribution in the mature rodent brain and tend to segregate to synapses with different physiological properties. In the hippocampus, VGLUT1 is the dominate subtype in adult animals, whereas VGLUT2 is transiently expressed during early postnatal development. We generated and characterized VGLUT1 knockout mice in order to examine the functional contribution of this transporter to hippocampal synaptic plasticity and hippocampus-dependent spatial learning. Because complete deletion of VGLUT1 resulted in postnatal lethality, we used heterozygous animals for analysis. Here, we report that deletion of VGLUT1 resulted in impaired hippocampal long-term potentiation (LTP) in the CA1 region in vitro. In contrast, heterozygous VGLUT2 mice that were investigated for comparison did not show any changes in LTP. The reduced ability of VGLUT1-deficient mice to express LTP was accompanied by a specific deficit in spatial reversal learning in the water maze. Our data suggest a functional role of VGLUT1 in forms of hippocampal synaptic plasticity that are required to adapt and modify acquired spatial maps to external stimuli and changes.
机译:囊状谷氨酸转运蛋白1和2(VGLUT1,VGLUT2)在成熟的啮齿动物大脑中显示出很大的互补性分布,并且倾向于分离成具有不同生理特性的突触。在海马中,VGLUT1是成年动物的主要亚型,而VGLUT2在产后早期发育过程中短暂表达。我们生成并表征了VGLUT1基因敲除小鼠,以检查该转运蛋白对海马突触可塑性和海马依赖性空间学习的功能贡献。由于VGLUT1的完全删除会导致出生后死亡,因此我们使用杂合动物进行分析。在这里,我们报告说,VGLUT1的缺失导致体外CA1区海马长时程增强(LTP)受损。相比之下,进行比较研究的杂合VGLUT2小鼠在LTP中未显示任何变化。 VGLUT1缺陷小鼠表达LTP的能力降低,伴随着水迷宫中空间逆转学习的特定缺陷。我们的数据表明VGLUT1在海马突触可塑性形式中的功能性作用,这是适应和修改获得的空间图以适应外部刺激和变化所必需的。

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  • 来源
    《Cerebral Cortex》 |2010年第3期|p.684-693|共10页
  • 作者

    Rudi DHooge;

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