Sustained depolarizing shift of the GABA reversal potential by glutamate receptor activation in hippocampal neurons

被引:30
作者
Kitamura, Akihiko [1 ,3 ]
Ishibashi, Hitoshi [1 ]
Watanabe, Miho [1 ]
Takatsuru, Yusuke [1 ,3 ]
Brodwick, Malcolm [1 ,2 ]
Nabekura, Junichi [1 ,3 ,4 ]
机构
[1] Natl Inst Physiol Sci, Dept Dev Physiol, Div Homeostat Dev, Okazaki, Aichi 4448585, Japan
[2] Univ Texas Med Branch, Dept Neurosci & Cell Biol, Galveston, TX 77555 USA
[3] Japan Sci & Technol Corp, Core Res Evolutionary Sci & Technol, Kawaguchi, Saitama 3320012, Japan
[4] Grad Univ Adv Studies SOKENDAI, Hayama 2400193, Japan
关键词
Glutamate; NMDA receptor; Hippocampus; KCC2; GABA; Cl- reversal potential;
D O I
10.1016/j.neures.2008.09.002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The inhibitory action of GABA is a consequence of a relatively hyperpolarized Cl- reversal potential (E-Cl), which results from the activity of K+-Cl- cotransporter (KCC2). In this study we investigated the effects of glutamate and glutamatergic synaptic activity on E-Cl. In dissociated culture of mature hippocampal neurons, the application of glutamate caused positive E-Cl shifts with two distinct temporal components. Following a large transient depolarizing state, the sustained depolarizing state (E-Cl-sustained) lasted more than 30 min. The E-Cl-sustained disappeared in the absence of external Ca2+ during glutamate application and was blocked by both AP5 and MK801, but not by nifedipine. The E-Cl-sustained was also induced by NMDA. The E-Cl-sustained was blocked by furosemide, a blocker of both KCC2 and NKCC1, but not bumetanide, a blocker of NKCC1. On the other hand, in immature neurons having less expression of KCC2, NMDA failed to induce the sustained depolarizing E-Cl shift. In organotypic slice cultured neurons, repetitive activation of glutamatergic afferents also generated a sustained depolarizing E-Cl shift. These results suggest that Ca2+ influx through NMDA receptors causes the down-regulation of KCC2 and gives rise to long lasting positive E-Cl shifts, which might contribute to hyperexcitability, LTP, and epileptiform discharges. (C) 2008 Elsevier Ireland Ltd and the Japan Neuroscience Society. All rights reserved.
引用
收藏
页码:270 / 277
页数:8
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