Postsynaptic M1 and M3 receptors are responsible for the muscarinic enhancement of retrograde endocannabinoid signalling in the hippocampus

被引:137
作者
Ohno-Shosaku, T
Matsui, M
Fukudome, Y
Shosaku, J
Tsubokawa, H
Taketo, MM
Manabe, T
Kano, M
机构
[1] Kanazawa Univ, Grad Sch Med Sci, Dept Cellular Neurophysiol, Kanazawa, Ishikawa 9208640, Japan
[2] Univ Tokyo, Inst Med Sci, Dept Basic Med Sci, Div Neuronal Network, Tokyo, Japan
[3] Univ Tokyo, Grad Sch Pharmaceut Sci, Lab Biomed Genet, Tokyo, Japan
[4] Natl Inst Physiol Sci, Okazaki, Aichi 444, Japan
[5] Kyoto Univ, Grad Sch Med, Dept Pharmacol, Kyoto, Japan
[6] Kobe Univ, Fac Med, Dept Neurosci, Div Cell Biol & Neurophysiol, Kobe, Hyogo, Japan
关键词
depolarization-induced suppression of inhibition (DSI); inhibitory transmission; mouse; rat; synaptic modulation;
D O I
10.1046/j.1460-9568.2003.02732.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The cholinergic system is crucial for higher brain functions including learning and memory. These functions are mediated primarily by muscarinic acetylcholine receptors (mAChRs) that consist of five subtypes (M-1-M-5). A recent study suggested a novel role of acetylcholine as a potent enhancer of endocannabinoid signalling that acts retrogradely from postsynaptic to presynaptic neurons. In the present study, we further investigated the mechanisms of this cholinergic effect on endocannabinoid signalling. We made paired whole-cell recordings from cultured hippocampal neurons, and monitored inhibitory postsynaptic currents (IPSCs). The postsynaptic depolarization induced a transient suppression of IPSCs (DSI), a phenomenon known to involve retrograde signalling by endocannabinoids. The cholinergic agonist carbachol (CCh) markedly enhanced DSI at 0.01-0.3 mum without changing the presynaptic cannabinoid sensitivity. The facilitating effect of CCh on DSI was mimicked by the muscarinic agonist oxotremorine-M, whereas it was eliminated by the muscarinic antagonist atropine. It was also blocked by a non-hydrolizable analogue of GDP (GDP-beta-S) that was applied intracellularly to postsynaptic neurons. The muscarinic enhancement of DSI persisted to a substantial degree in the neurons prepared from M-1-knockout and M-3 -knockout mice, but was virtually eliminated in the neurons from M-1/M-3-compound-knockout mice. CCh still enhanced DSI significantly under the blockade of postsynatpic K+ conductance, and did not significantly influence the depolarization-induced Ca2+ transients. These results indicate that the activation of postsynaptic M-1 and M-3 receptors facilitates the depolarization-induced release of endocannabinoids.
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收藏
页码:109 / 116
页数:8
相关论文
共 56 条
[11]   Cannabinoids inhibit hippocampal GABAergic transmission and network oscillations [J].
Hájos, N ;
Katona, I ;
Naiem, SS ;
Mackie, K ;
Ledent, C ;
Mody, I ;
Freund, TF .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2000, 12 (09) :3239-3249
[12]  
Hajos N, 1998, NEUROSCIENCE, V82, P355
[13]   Disruption of the m1 receptor gene ablates muscarinic receptor-dependent M current regulation and seizure activity in mice [J].
Hamilton, SE ;
Loose, MD ;
Qi, M ;
Levey, AI ;
Hille, B ;
McKnight, GS ;
Idzerda, RL ;
Nathanson, NM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (24) :13311-13316
[14]   MUSCARINIC RECEPTOR SUBTYPES [J].
HULME, EC ;
BIRDSALL, NJM ;
BUCKLEY, NJ .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 1990, 30 :633-673
[15]   A characterization of muscarinic receptor-mediated intracellular Ca2+ mobilization in cultured rat hippocampal neurones [J].
Irving, AJ ;
Collingridge, GL .
JOURNAL OF PHYSIOLOGY-LONDON, 1998, 511 (03) :747-759
[16]   Cholinergic neurotransmission and synaptic plasticity concerning memory processing [J].
Jerusalinsky, D ;
Kornisiuk, E ;
Izquierdo, I .
NEUROCHEMICAL RESEARCH, 1997, 22 (04) :507-515
[17]   Retrograde signaling at central synapses via endogenous cannabinoids [J].
Kano, M ;
Ohno-Shosaku, T ;
Maejima, T .
MOLECULAR PSYCHIATRY, 2002, 7 (03) :234-235
[18]  
Katona I, 1999, J NEUROSCI, V19, P4544
[19]  
Kim J, 2002, J NEUROSCI, V22, P10182
[20]   Cholinergic modulation of cortical function: A hypothetical role in shifting the dynamics in cortical network [J].
Kimura, F .
NEUROSCIENCE RESEARCH, 2000, 38 (01) :19-26