Endocannabinoids inhibit transmission at granule cell to Purkinje cell synapses by modulating three types of presynaptic calcium channels

被引:118
作者
Brown, SP [1 ]
Safo, PK [1 ]
Regehr, WG [1 ]
机构
[1] Harvard Univ, Sch Med, Dept Neurobiol, Boston, MA 02115 USA
关键词
calcium channels; cannabinoids; Purkinje cell; DSI; DSE; cerebellum;
D O I
10.1523/JNEUROSCI.0918-04.2004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
At many central synapses, endocannabinoids released by postsynaptic cells inhibit neurotransmitter release by activating presynaptic cannabinoid receptors. The mechanisms underlying this important means of synaptic regulation are not fully understood. It has been shown at several synapses that endocannabinoids inhibit neurotransmitter release by reducing calcium influx into presynaptic terminals. One hypothesis maintains that endocannabinoids indirectly reduce calcium influx by modulating potassium channels and narrowing the presynaptic action potential. An alternative hypothesis is that endocannabinoids directly and selectively inhibit N-type calcium channels in presynaptic terminals. Here we test these hypotheses at the granule cell to Purkinje cell synapse in cerebellar brain slices. By monitoring optically the presynaptic calcium influx (Ca-influx) and measuring the EPSC amplitudes, we found that cannabinoid-mediated inhibition arises solely from reduced presynaptic Cainflux. Next we found that cannabinoid receptor activation does not affect the time course of presynaptic calcium entry, indicating that the reduced Cainflux reflects inhibition of presynaptic calcium channels. Finally, we assessed the classes of presynaptic calcium channels inhibited by cannabinoid receptor activation via peptide calcium channel antagonists. Previous studies established that N-type, P/Q-type, and R-type calcium channels are all present in granule cell presynaptic boutons. We found that cannabinoid activation reduced Ca-influx through N-type, P/Q-type, and R-type calcium channels to 29, 60, and 55% of control, respectively. Thus, rather than narrowing the presynaptic action potential or exclusively modulating N-type calcium channels, CB1 receptor activation inhibits synaptic transmission by modulating all classes of calcium channels present in the presynaptic terminal of the granule cell to Purkinje cell synapse.
引用
收藏
页码:5623 / 5631
页数:9
相关论文
共 47 条
[1]  
Alger BE, 2002, PROG NEUROBIOL, V68, P247
[2]   Retrograde signalling in depolarization-induced suppression of inhibition in rat hippocampal CA1 cells [J].
Alger, BE ;
Pitler, TA ;
Wagner, JJ ;
Martin, LA ;
Morishita, W ;
Kirov, SA ;
Lenz, RA .
JOURNAL OF PHYSIOLOGY-LONDON, 1996, 496 (01) :197-209
[3]   The effects of cannabinoids on the brain [J].
Ameri, A .
PROGRESS IN NEUROBIOLOGY, 1999, 58 (04) :315-348
[4]   REGULATION OF TRANSMITTER RELEASE AT THE SQUID GIANT SYNAPSE BY PRESYNAPTIC DELAYED RECTIFIER POTASSIUM CURRENT [J].
AUGUSTINE, GJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1990, 431 :343-364
[5]  
Byrne JH, 1996, J NEUROSCI, V16, P425
[6]   International Union of Pharmacology. XL. Compendium of voltage-gated ion channels: Calcium channels [J].
Catterall, WA ;
Striessnig, J ;
Snutch, TP ;
Perez-Reyes, E .
PHARMACOLOGICAL REVIEWS, 2003, 55 (04) :579-581
[7]  
Chen CF, 1997, J NEUROSCI, V17, P8687
[8]  
Daniel H, 2001, J PHYSIOL-LONDON, V537, P793
[9]   ISOLATION AND STRUCTURE OF A BRAIN CONSTITUENT THAT BINDS TO THE CANNABINOID RECEPTOR [J].
DEVANE, WA ;
HANUS, L ;
BREUER, A ;
PERTWEE, RG ;
STEVENSON, LA ;
GRIFFIN, G ;
GIBSON, D ;
MANDELBAUM, A ;
ETINGER, A ;
MECHOULAM, R .
SCIENCE, 1992, 258 (5090) :1946-1949
[10]  
Diana MA, 2003, J NEUROSCI, V23, P5906