首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >P301L tau expression affects glutamate release and clearance in the hippocampal trisynaptic pathway
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P301L tau expression affects glutamate release and clearance in the hippocampal trisynaptic pathway

机译:P301L tau表达影响海马三突触通路中谷氨酸的释放和清除

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摘要

Individuals at risk of developing Alzheimer's disease (AD) often exhibit hippocampal hyperexcitability. A growing body of evidence suggests that perturbations in the glutamatergic tripartite synapse may underlie this hyperexcitability. Here, we used a tau mouse model of AD (rTg(TauP301L) 4510) to examine the effects of tau pathology on hippocampal glutamate regulation. We found a 40% increase in hippocampal vesicular glutamate transporter, which packages glutamate into vesicles, and has previously been shown to influence glutamate release, and a 40% decrease in hippocampal glutamate transporter 1, the major glutamate transporter responsible for removing glutamate from the extracellular space. To determine whether these alterations affected glutamate regulation in vivo, we measured tonic glutamate levels, potassium-evoked glutamate release, and glutamate uptake/clearance in the dentate gyrus, cornu ammonis 3(CA3), and cornu ammonis 1(CA1) regions of the hippocampus. P301L tau expression resulted in a 4-and 7-fold increase in potassium-evoked glutamate release in the dentate gyrus and CA3, respectively, and significantly decreased glutamate clearance in all three regions. Both release and clearance correlated with memory performance in the hippocampal-dependent Barnes maze task. Alterations in mice expressing P301L were observed at a time when tau pathology was subtle and before readily detectable neuron loss. These data suggest novel mechanisms by which tau may mediate hyperexcitability.
机译:有患阿尔茨海默氏病(AD)风险的个体经常表现出海马过度兴奋性。越来越多的证据表明,谷氨酸能三联突触的扰动可能是这种过度兴奋性的基础。在这里,我们使用AD的tau小鼠模型(rTg(TauP301L)4510)来检查tau病理对海马谷氨酸调节的影响。我们发现海马囊泡谷氨酸转运蛋白增加40%,将谷氨酸包装到囊泡中,以前已显示出影响谷氨酸释放,海马谷氨酸转运蛋白1降低40%,主要谷氨酸转运蛋白负责从细胞外去除谷氨酸。空间。为了确定这些改变是否影响体内的谷氨酸调节,我们测量了齿状回,角膜羊膜3(CA3)和角膜羊膜1(CA1)区域的补品谷氨酸水平,钾诱发的谷氨酸释放和谷氨酸摄取/清除。海马。 P301L tau表达导致齿状回和CA3中的钾诱发谷氨酸释放分别增加4倍和7倍,并且在所有三个区域中谷氨酸清除率均显着降低。在依赖海马的巴恩斯迷宫任务中,释放和清除都与记忆表现相关。在tau病理微妙的时候和容易检测到的神经元丢失之前,观察到了表达P301L的小鼠的变化。这些数据表明tau可能介导过度兴奋性的新机制。

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