Functional roles of presynaptic GABAA receptors on glycinergic nerve terminals in the rat spinal cord

被引:81
作者
Jang, IS [1 ]
Jeong, HJ [1 ]
Katsurabayashi, S [1 ]
Akaike, N [1 ]
机构
[1] Kyushu Univ, Grad Sch Med Sci, Fukuoka 8128582, Japan
来源
JOURNAL OF PHYSIOLOGY-LONDON | 2002年 / 541卷 / 02期
关键词
D O I
10.1113/jphysiol.2001.016535
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
GABA(A) receptor-mediated presynaptic depolarization is believed to induce presynaptic inhibition of excitatory synaptic transmission. We report here the functional roles of presynaptic GABA(A) receptors in glycinergic transmission of the rat spinal cord. In mechanically dissociated rat sacral dorsal commissural nucleus (SDCN) neurons attached with native glycinergic and GABAergic nerve terminals, glycinergic spontaneous inhibitory postsynaptic currents (sIPSCs) were isolated from a mixture of both glycinergic and GABAergic sIPSCs by perfusing the SDCN nerve cell body with ATP-free internal solution. Under such experimental conditions, exogenously applied muscimol (0.5 muM) depolarized glycinergic presynaptic nerve terminals and significantly increased glycinergic sIPSC frequency to 542.7 +/- 47.3 % of the control without affecting the mean current amplitude. The facilitatory effect of muscimol on sIPSC frequency was completely blocked by bicuculline (10 muM) or SR95531 (10 muM), selective GABA(A) receptor antagonists. This muscimol-induced presynaptic depolarization was due to a higher intraterminal Cl- concentration, which is maintained by a bumetanide-sensitive Na-K-Cl cotransporter. On the contrary, when electrically evoked, this muscimol-induced presynaptic depolarization was found to decrease the action potential-dependent glycine release evoked by focal stimulation of a single terminal. The results suggest that GABAA receptor-mediated presynaptic depolarization has two functional roles: (1) presynaptic inhibition of action potential-driven glycinergic transmission, and (2) presynaptic facilitation of spontaneous glycinergic transmission.
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页码:423 / 434
页数:12
相关论文
共 47 条
[1]   Focal stimulation of single GABAergic presynaptic boutons on the rat hippocampal neuron [J].
Akaike, N ;
Murakami, N ;
Katsurabayashi, S ;
Jin, YH ;
Imazawa, T .
NEUROSCIENCE RESEARCH, 2002, 42 (03) :187-195
[2]   NYSTATIN PERFORATED-PATCH RECORDING AND ITS APPLICATIONS TO ANALYSES OF INTRACELLULAR MECHANISMS [J].
AKAIKE, N ;
HARATA, N .
JAPANESE JOURNAL OF PHYSIOLOGY, 1994, 44 (05) :433-473
[3]   Activation of Na+,K+,Cl- cotransport in squid giant axon by extracellular ions:: evidence for ordered binding [J].
Altamirano, AA ;
Breitwieser, GE ;
Russell, JM .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 1999, 1416 (1-2) :195-207
[4]  
ALVAREZLEEFMANS FJ, 1990, CHLORIDE CHANNELS AND CARRIERS IN NERVE, MUSCLE, AND GLIAL CELLS, P109
[5]   AXOAXONAL SYNAPSE LOCATION AND CONSEQUENCES FOR PRESYNAPTIC INHIBITION IN CRUSTACEAN MOTOR AXON TERMINALS [J].
ATWOOD, HL ;
STEVENS, JK ;
MARIN, L .
JOURNAL OF COMPARATIVE NEUROLOGY, 1984, 225 (01) :64-74
[6]   AN INTRACELLULAR ANALYSIS OF GAMMA-AMINOBUTYRIC-ACID-ASSOCIATED ION MOVEMENTS IN RAT SYMPATHETIC NEURONS [J].
BALLANYI, K ;
GRAFE, P .
JOURNAL OF PHYSIOLOGY-LONDON, 1985, 365 (AUG) :41-58
[7]   INHIBITORY NEUROTRANSMISSION IN RAT SPINAL-CORD - COLOCALIZATION OF GLYCINE-RECEPTOR AND GABA(A)-RECEPTOR AT GABAERGIC SYNAPTIC CONTACTS DEMONSTRATED BY TRIPLE IMMUNOFLUORESCENCE STAINING [J].
BOHLHALTER, S ;
MOHLER, H ;
FRITSCHY, JM .
BRAIN RESEARCH, 1994, 642 (1-2) :59-69
[8]   Shunting versus inactivation: Analysis of presynaptic inhibitory mechanisms in primary afferents of the crayfish [J].
Cattaert, D ;
El Manira, A .
JOURNAL OF NEUROSCIENCE, 1999, 19 (14) :6079-6089
[9]   Excitatory actions of GABA in developing rat hypothalamic neurones [J].
Chen, G ;
Trombley, PQ ;
vandenPol, AN .
JOURNAL OF PHYSIOLOGY-LONDON, 1996, 494 (02) :451-464
[10]   Junctional versus extrajunctional glycine and GABAA receptor-mediated IPSCs in identified lamina I neurons of the adult rat spinal cord [J].
Chéry, N ;
De Koninck, Y .
JOURNAL OF NEUROSCIENCE, 1999, 19 (17) :7342-7355