Glutamate Spillover Augments GABA Synthesis and Release from Axodendritic Synapses in Rat Hippocampus

被引:18
作者
Stafford, Misty M.
Brown, Molly N. [2 ]
Mishra, Puneet
Stanwood, Gregg D. [2 ,3 ]
Mathews, Gregory C. [1 ,2 ,3 ]
机构
[1] Vanderbilt Univ, Med Ctr, Dept Neurol, Nashville, TN 37232 USA
[2] Vanderbilt Univ, Dept Pharmacol, Nashville, TN 37232 USA
[3] Vanderbilt Univ, Kennedy Ctr Res Human Dev, Nashville, TN 37232 USA
关键词
inhibition; GABA metabolism; glutamate transporters; TRANSPORTER EAAC1; PYRAMIDAL CELLS; BRAIN; ASTROCYTES; LOCALIZATION; NEURONS; CA1; INTERNEURONS; CORTEX; CONTRIBUTES;
D O I
10.1002/hipo.20600
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Tight coupling between gamma-aminobutyric acid (GABA) synthesis and vesicle filling suggests that the presynaptic supply of precursor glutamate could dynamically regulate inhibitory synapses. Although the neuronal glutamate transporter excitatory amino acid transporter 3 (EAAT3) has been proposed to mediate such a metabolic role, highly efficient astrocytic uptake of synaptically released glutamate normally maintains low-extracellular glutamate levels. We examined whether axodendritic inhibitory synapses in stratum radiatum of hippocampal area CA1, which are closely positioned among excitatory glutamatergic synapses, are regulated by synaptic glutamate release via presynaptic uptake. Under conditions of spatially and temporally coordinated release of glutamate and GABA within pyramidal cell dendrites, blocking glial glutamate uptake enhanced quantal release of GABA in a transporter-dependent manner. These physiological findings correlated with immunohistochemical studies revealing expression of EAAT3 by interneurons and uptake of D-asparate into putative axodendritic inhibitory terminals only when glial uptake was blocked. These results indicate that spillover of glutamate between adjacent excitatory and inhibitory synapses can occur under conditions when glial uptake incompletely clears synaptically released glutamate. Our anatomical studies also suggest that perisomatic inhibitory synapses, unlike synapses within dendritic layers of hippocampus, are not capable of glutamate uptake and therefore transporter-mediated dynamic regulation of inhibition is a unique feature of axodendritic synapses that may play a role in maintaining a homeostatic balance of inhibition and excitation. (C) 2009 Wiley-Liss, Inc.
引用
收藏
页码:134 / 144
页数:11
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