SYNAPTIC EXCITATION PRODUCES A LONG-LASTING REBOUND POTENTIATION OF INHIBITORY SYNAPTIC SIGNALS IN CEREBELLAR PURKINJE-CELLS

被引:308
作者
KANO, M [1 ]
REXHAUSEN, U [1 ]
DREESSEN, J [1 ]
KONNERTH, A [1 ]
机构
[1] MAX PLANCK INST BIOPHYS CHEM,FASSBERG,W-3400 GOTTINGEN,GERMANY
关键词
D O I
10.1038/356601a0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
PERSISTENT changes in synaptic efficacy are thought to underlie the formation of learning and memory in the brain 1. High-frequency activation of an afferent excitatory fibre system can induce long-term potentiation 2,3, and conjunctive activation of two distinct excitatory synaptic inputs to the cerebellar Purkinje cells can lead to long-term depression of the synaptic activity of one of the inputs 4. Here we report a new form of neural plasticity in which activation of an excitatory synaptic input can induce a potentiation of inhibitory synaptic signals to the same cell. In cerebellar Purkinje cells stimulation of the excitatory climbing fibre synapses is followed by a long-lasting (up to 75 min) potentiation of gamma-aminobutyric acid A (GABA(A)) receptor-mediated inhibitory postsynaptic currents (i.p.s.cs), a phenomenon that we term rebound potentiation. Using whole-cell patch-clamp recordings in combination with fluorometric video imaging of intracellular calcium ion concentration, we find that a climbing fibre-induced transient increase in postsynaptic calcium concentration triggers the induction of rebound potentiation: Because the response of Purkinje cells to bath-applied exogenous GABA is also potentiated after climbing fibre-stimulation with a time course similar to that of the rebound potentiation of i.p.s.cs, we conclude that the potentiation is caused by a calcium-dependent upregulation of postsynaptic GABA(A) receptor function. We propose that rebound potentiation is a mechanism by which in vivo block of climbing fibre activity induces an increase in excitability in Purkinje cells 5,6. Moreover, rebound potentiation of i.p.s.cs is a cellular mechanism which, in addition to the long-term depression of parallel fibre synaptic activity 4, may have an important role for motor learning in the cerebellum.
引用
收藏
页码:601 / 604
页数:4
相关论文
共 32 条
[1]  
BENEDETTI F, 1984, EXP BRAIN RES, V55, P368
[2]   GABAA RECEPTOR FUNCTION IS REGULATED BY PHOSPHORYLATION IN ACUTELY DISSOCIATED GUINEA-PIG HIPPOCAMPAL-NEURONS [J].
CHEN, QX ;
STELZER, A ;
KAY, AR ;
WONG, RKS .
JOURNAL OF PHYSIOLOGY-LONDON, 1990, 420 :207-221
[3]  
CHEUN J E, 1991, Society for Neuroscience Abstracts, V17, P602
[4]   EXCITATORY AMINO-ACID RECEPTORS AND SYNAPTIC PLASTICITY [J].
COLLINGRIDGE, GL ;
SINGER, W .
TRENDS IN PHARMACOLOGICAL SCIENCES, 1990, 11 (07) :290-296
[5]   EXCITATORY SYNAPTIC ACTION OF CLIMBING FIBRES ON PURKINJE CELLS OF CEREBELLUM [J].
ECCLES, JC ;
LLINAS, R ;
SASAKI, K .
JOURNAL OF PHYSIOLOGY-LONDON, 1966, 182 (02) :268-&
[6]   A THIN SLICE PREPARATION FOR PATCH CLAMP RECORDINGS FROM NEURONS OF THE MAMMALIAN CENTRAL NERVOUS-SYSTEM [J].
EDWARDS, FA ;
KONNERTH, A ;
SAKMANN, B ;
TAKAHASHI, T .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1989, 414 (05) :600-612
[7]   QUANTAL ANALYSIS OF INHIBITORY SYNAPTIC TRANSMISSION IN THE DENTATE GYRUS OF RAT HIPPOCAMPAL SLICES - A PATCH-CLAMP STUDY [J].
EDWARDS, FA ;
KONNERTH, A ;
SAKMANN, B ;
BUSCH, C .
JOURNAL OF PHYSIOLOGY-LONDON, 1990, 430 :213-+
[8]  
GRYNKIEWICZ G, 1985, J BIOL CHEM, V260, P3440
[9]   IMPROVED PATCH-CLAMP TECHNIQUES FOR HIGH-RESOLUTION CURRENT RECORDING FROM CELLS AND CELL-FREE MEMBRANE PATCHES [J].
HAMILL, OP ;
MARTY, A ;
NEHER, E ;
SAKMANN, B ;
SIGWORTH, FJ .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1981, 391 (02) :85-100
[10]   MODIFICATION OF GABAA RECEPTOR FUNCTION BY AN ANALOG OF CYCLIC-AMP [J].
HARRISON, NL ;
LAMBERT, NA .
NEUROSCIENCE LETTERS, 1989, 105 (1-2) :137-142