Glial glutamate transporters maintain one-to-one relationship at the climbing fiber-Purkinje cell synapse by preventing glutamate spillover

被引:44
|
作者
Takayasu, Yukihiro
Iino, Masae
Shimamoto, Keiko
Tanaka, Kohichi
Ozawa, Seiji
机构
[1] Gunma Univ, Grad Sch Med, Dept Neurophysiol, Maebashi, Gumma 3718511, Japan
[2] Gunma Univ, Grad Sch Med, Dept Otolaryngol, Maebashi, Gumma 3718511, Japan
[3] Suntory Inst Bioorgan Res, Mishima, Osaka 6188503, Japan
[4] Tokyo Med & Dent Univ, Sch Biomed Sci, Dept Mol Neurosci, Tokyo 1138519, Japan
[5] Tokyo Med & Dent Univ, Med Res Inst, Tokyo 1138519, Japan
来源
JOURNAL OF NEUROSCIENCE | 2006年 / 26卷 / 24期
关键词
glutamate transporter; GLAST; multiple innervation; climbing fiber; Purkinje cell; EPSC;
D O I
10.1523/JNEUROSCI.5342-05.2006
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
A glial glutamate transporter, GLAST, is expressed abundantly in Bergmann glia and plays a major role in glutamate uptake at the excitatory synapses in cerebellar Purkinje cells (PCs). It has been reported that a higher percentage of PCs in GLAST-deficient mice are multiply innervated by climbing fibers (CFs) than in the wild-type (WT) mice, and that CF-mediated EPSCs with small amplitude and slow rise time, designated as atypical slow CF-EPSCs, are observed in these mice. To clarify the mechanism(s) underlying the generation of these atypical CF-EPSCs, we used (2S, 3S)-3-[3-(4-methoxybenzoylamino) benzyloxy] aspartate (PMB-TBOA), an inhibitor of glial glutamate transporters. After the application of PMB-TBOA, slow-rising CF-EPSCs were newly detected in WT mice, and their rise and decay kinetics were different from those of conventional fast-rising CF-EPSCs but similar to those of atypical CF-EPSCs in GLAST-deficient mice. Furthermore, both slow-rising CF-EPSCs in the presence of PMB-TBOA in WT mice and atypical CF-EPSCs in GLAST-deficient mice showed much greater paired-pulsed epression compared with fast-rising CF-EPSCs. In addition, both of them were more markedly inhibited by gamma-D-glutamyl-glycine, a low-affinity competitive antagonist of AMPA receptors. These results indicated that both of these types of EPSCs were mediated by a low concentration of glutamate released from neighboring CFs. Based on all of these findings, we suggest that glial transporters prevent glutamate released from a single CF from spilling over to neighboring PCs other than the synaptically connected PC, and play an essential role in the maintenance of the functional one-to-one relationship between CFs and PCs.
引用
收藏
页码:6563 / 6572
页数:10
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