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大鼠视网膜中的高亲和力谷氨酸转运体:胶质细胞谷氨酸转运体GLAST-1在递质清除中的主要作用。

High-affinity glutamate transporters in the rat retina: a major role of the glial glutamate transporter GLAST-1 in transmitter clearance.

作者信息

Rauen T, Taylor W R, Kuhlbrodt K, Wiessner M

机构信息

MPI für Hirnforschung, Abteilung für Neuroanatomie, Deutschordenstr. 46, D-60528 Frankfurt/M., Germany.

出版信息

Cell Tissue Res. 1998 Jan;291(1):19-31. doi: 10.1007/s004410050976.

Abstract

Glutamate is the major excitatory neurotransmitter of the mammalian retina and glutamate uptake is essential for normal transmission at glutamatergic synapses. The reverse transcriptase-polymerase chain reaction (RT-PCR) has revealed the presence of three different high-affinity glutamate transporters in the rat retina, viz. GLAST-1, GLT-1 and EAAC-1. No message has been found in the retina for EAAT-4, a transporter recently cloned from human brain. By using membrane vesicle preparations of total rat retina, we show that glutamate uptake in the retina is a high-affinity electrogenic sodium-dependent transport process driven by the transmembrane sodium ion gradient. Autoradiography of intact and dissociated rat retinae indicates that glutamate uptake by Müller glial cells dominates total retinal glutamate transport and that this uptake is strongly influenced by the activity of glutamine synthetase. RT-PCR, immunoblotting and immunohistochemistry have revealed that Müller cells express only GLAST-1. The Km for glutamate of GLAST-1 is 2.1+/-0.4 microM. This study suggests a major role for the Müller cell glutamate transporter GLAST-1 in retinal transmitter clearance. By regulating the extracellular glutamate concentration, the action of GLAST-1 in Müller cells may extend beyond the protection of neurons from excitotoxicity; we suggest a mechanism by which Müller cell glutamate transport might play an active role in shaping the time course of excitatory transmission in the retina.

摘要

谷氨酸是哺乳动物视网膜的主要兴奋性神经递质,谷氨酸摄取对于谷氨酸能突触的正常传递至关重要。逆转录聚合酶链反应(RT-PCR)已揭示大鼠视网膜中存在三种不同的高亲和力谷氨酸转运体,即GLAST-1、GLT-1和EAAC-1。在视网膜中未发现最近从人脑克隆的转运体EAAT-4的信息。通过使用大鼠全视网膜的膜囊泡制剂,我们表明视网膜中的谷氨酸摄取是一种由跨膜钠离子梯度驱动的高亲和力、电生性、依赖钠离子的转运过程。完整和分离的大鼠视网膜的放射自显影表明,米勒胶质细胞对谷氨酸的摄取在视网膜总谷氨酸转运中占主导地位,并且这种摄取受到谷氨酰胺合成酶活性的强烈影响。RT-PCR、免疫印迹和免疫组织化学已揭示米勒细胞仅表达GLAST-1。GLAST-1对谷氨酸的Km为2.1±0.4微摩尔。本研究表明米勒细胞谷氨酸转运体GLAST-1在视网膜递质清除中起主要作用。通过调节细胞外谷氨酸浓度,GLAST-1在米勒细胞中的作用可能不仅限于保护神经元免受兴奋性毒性;我们提出了一种机制,通过该机制米勒细胞谷氨酸转运可能在塑造视网膜兴奋性传递的时间过程中发挥积极作用。

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