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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >A QUANTITATIVE ASSESSMENT OF GLUTAMATE UPTAKE INTO HIPPOCAMPAL SYNAPTIC TERMINALS AND ASTROCYTES: NEW INSIGHTS INTO A NEURONAL ROLE FOR EXCITATORY AMINO ACID TRANSPORTER 2 (EAAT2)
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A QUANTITATIVE ASSESSMENT OF GLUTAMATE UPTAKE INTO HIPPOCAMPAL SYNAPTIC TERMINALS AND ASTROCYTES: NEW INSIGHTS INTO A NEURONAL ROLE FOR EXCITATORY AMINO ACID TRANSPORTER 2 (EAAT2)

机译:谷氨酸摄取到海马突触终末和星形胶质细胞中的定量评估:兴奋性氨基酸转运蛋白2(EAAT2)在神经元作用中的新发现

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The relative distribution of the excitatory amino acid transporter 2 (EAAT2) between synaptic terminals and astroglia, and the importance of EAAT2 for the uptake into terminals is still unresolved. Here we have used antibodies to glutaraldehyde-fixed D-aspartate to identify electron microscopically the sites Of D-aspartate accumulation in hippocampal slices. About 3/4 of all terminals in the stratum radiatum CA1 accumulated D-aspartate-immunoreactivity by an active dihydrokainate-sensitive mechanism which was absent in EAAT2 glutamate transporter knockout mice. These terminals were responsible for more than half of all D-aspartate uptake of external substrate in the slices. This is unexpected as EAAT2-immunoreactivity observed in intact brain tissue is mainly associated with astroglia. However, when examining synaptosomes and slice preparations where the extracellular space is larger than in perfusion fixed tissue, it was confirmed that most EAAT2 is in astroglia (about 80%). Neither D-aspartate uptake nor EAAT2 protein was detected in dendritic spines. About 6% of the EAAT2-immunoreactivity was detected in the plasma membrane of synaptic terminals (both within and outside of the synaptic cleft). Most of the remaining immunoreactivity (8%) was found in axons where it was distributed in a plasma membrane surface area several times larger than that of astroglia. This explains why the densities of neuronal EAAT2 are low despite high levels of mRNA in CA3 pyramidal cell bodies, but not why EAAT2 in terminals account for more than half of the uptake of exogenous substrate by hippocampal slice preparations. This and the relative amount of terminal versus glial uptake in the intact brain remain to be discovered. (C) 2008 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:突触末端和星形胶质细胞之间的兴奋性氨基酸转运蛋白2(EAAT2)的相对分布,以及EAAT2对于摄取到末端的重要性仍未解决。在这里,我们使用了戊二醛固定的D-天冬氨酸的抗体,以电子显微镜识别海马切片中D-天冬氨酸的积累位置。通过EAAT2谷氨酸转运蛋白敲除小鼠中不存在的活性二氢海藻酸盐敏感机制,放射状CA1层中所有末端的约3/4积累了D-天冬氨酸免疫反应性。这些末端占切片中所有外部底物D-天冬氨酸摄取的一半以上。这是出乎意料的,因为在完整的脑组织中观察到的EAAT2免疫反应性主要与星形胶质细胞相关。但是,当检查突触小体和切片制剂时,其胞外空间大于灌注固定组织中的突触小体和切片制剂时,已确认大多数EAAT2位于星形胶质细胞中(约80%)。在树突棘中均未检测到D-天冬氨酸的摄取或EAAT2蛋白。在突触末端的质膜中(在突触裂内部和外部)检测到大约6%的EAAT2-免疫反应性。大部分剩余的免疫反应性(8%)是在轴突中发现的,该轴突分布在质膜表面积中比星形胶质细胞大几倍。这就解释了为什么尽管CA3锥体细胞体中的mRNA水平很高,神经元EAAT2的密度还是很低,但是为什么为什么末端的EAAT2占海马切片制剂摄取外源底物的一半以上。这以及完整大脑中末梢对神经胶质摄取的相对量仍有待发现。 (C)2008 IBRO。由Elsevier Ltd.出版。保留所有权利。

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