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Relationship between increase in astrocytic GLT-1 glutamate transport and late-LTP

机译:星形细胞GLT-1谷氨酸转运增加与晚期LTP之间的关系

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摘要

Na+-dependent high-affinity glutamate transporters have important roles in the maintenance of basal levels of glutamate and clearance of glutamate during synaptic transmission. Interestingly, several studies have shown that basal glutamate transport displays plasticity. Glutamate uptake increases in hippocampal slices during early long-term potentiation (E-LTP) and late long-term potentiation (L-LTP). Four issues were addressed in this research: Which glutamate transporter is responsible for the increase in glutamate uptake during L-LTP? In what cell type in the hippocampus does the increase in glutamate uptake occur? Does a single type of cell contain all the mechanisms to respond to an induction stimulus with a change in glutamate uptake? What role does the increase in glutamate uptake play during L-LTP? We have confirmed that GLT-1 is responsible for the increase in glutamate uptake during L-LTP. Also, we found that astrocytes were responsible for much, if not all, of the increase in glutamate uptake in hippocampal slices during L-LTP. Additionally, we found that cultured astrocytes alone were able to respond to an induction stimulus with an increase in glutamate uptake. Inhibition of basal glutamate uptake did not affect the induction of L-LTP, but inhibition of the increase in glutamate uptake did inhibit both the expression of L-LTP and induction of additional LTP. It seems likely that heightened glutamate transport plays an ongoing role in the ability of hippocampal circuitry to code and store information.
机译:Na + 依赖的高亲和力谷氨酸转运蛋白在维持突触传递过程中谷氨酸的基础水平和清除谷氨酸中起重要作用。有趣的是,一些研究表明基础谷氨酸转运显示出可塑性。在早期长期增强(E-LTP)和晚期长期增强(L-LTP)期间,海马片中谷氨酸的摄取增加。这项研究解决了四个问题:L-LTP期间,哪个谷氨酸转运蛋白负责谷氨酸摄取的增加?海马在哪种细胞类型中会发生谷氨酸摄取的增加?单一类型的细胞是否包含所有响应谷氨酸摄取变化的诱导刺激的机制? L-LTP期间谷氨酸吸收的增加起什么作用?我们已经证实,GLT-1是导致L-LTP期间谷氨酸摄取增加的原因。此外,我们发现,在L-LTP期间,星形胶质细胞负责海马片中谷氨酸摄入的增加,即使不是全部,也是其中的大部分。此外,我们发现单独培养的星形胶质细胞能够对诱导刺激作出反应,并增加谷氨酸的摄取。抑制基础谷氨酸摄取不影响L-LTP的诱导,但是抑制谷氨酸摄取的增加确实抑制了L-LTP的表达和另外的LTP的诱导。谷氨酸转运的增加似乎在海马回路编码和存储信息的能力中起着持续的作用。

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