Regulation of vesicle traffic and neurotransmitter release in isolated nerve terminals

被引:26
作者
Ghijsen, WEJM [1 ]
Leenders, AGM [1 ]
da Silva, FHL [1 ]
机构
[1] Univ Amsterdam, Neurobiol Sect, Fac Sci, Grad Sch Neurosci,Swammerdam Inst Life Sci, NL-1090 GB Amsterdam, Netherlands
关键词
glutamate receptors; amino acid release; synaptosomes; Ca2+-channels; synaptic vesicles; INTRACELLULAR CA2+ CONCENTRATION; PRESYNAPTIC CALCIUM-CHANNELS; TRANSMITTER RELEASE; GLUTAMATE RELEASE; ACTIVE ZONE; RAB GTPASES; SYNAPTIC-TRANSMISSION; EXOCYTOTIC RELEASE; KAINATE RECEPTORS; MODULATION;
D O I
10.1023/A:1025606021867
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In this overview current insights in the regulation of presynaptic transmitter release, mainly acquired in studies using isolated CNS nerve terminals are highlighted. The following aspects are described. (i) The usefulness of pinched-off nerve terminals, so-called synaptosomes, for biochemical and ultrastructural studies of presynaptic stimulus-secretion coupling. (ii) The regulation of neurotransmitter release by multiple Ca2+ channels, with special emphasis on the specificity of different classes of these channels with respect to the release of distinct types of neurotransmitters, that are often co-localized, such as amino acids and neuropeptides. (iii) Possible molecular mechanisms involved in targeting synaptic vesicle (SV) traffic toward the active zone. (iv) The role of presynaptic receptors in regulating transmitter release, with special emphasis on different glutamate subtype receptors. Isolated nerve terminals are of great value as model system in order to obtain a better understanding of the regulation of the release of distinct classes of neurotransmitters in tiny CNS nerve endings.
引用
收藏
页码:1443 / 1452
页数:10
相关论文
共 65 条
[1]   Modulation of Ca2+ channels by activation of adenosine A(1) receptors in rat striatal glutamatergic nerve terminals [J].
Ambrosio, AF ;
Malva, JO ;
Carvalho, AP ;
Carvalho, CM .
NEUROSCIENCE LETTERS, 1996, 220 (03) :163-166
[2]   Diversification of synaptic strength: Presynaptic elements [J].
Atwood, HL ;
Karunanithi, S .
NATURE REVIEWS NEUROSCIENCE, 2002, 3 (07) :497-516
[3]   Functional interaction of the active zone proteins Munc13-1 and RIM1 in synaptic vesicle priming [J].
Betz, A ;
Thakur, P ;
Junge, HJ ;
Ashery, U ;
Rhee, JS ;
Scheuss, V ;
Rosenmund, C ;
Rettig, J ;
Brose, N .
NEURON, 2001, 30 (01) :183-196
[4]   Gaba transporter heterogeneity: Pharmacology and cellular localization [J].
Borden, LA .
NEUROCHEMISTRY INTERNATIONAL, 1996, 29 (04) :335-356
[5]  
Breukel A I, 1997, Methods Mol Biol, V72, P33
[6]   A presynaptic N-methyl-D-aspartate autoreceptor in rat hippocampus modulating amino acid release from a cytoplasmic pool [J].
Breukel, AIM ;
Besselsen, E ;
da Silva, FHL ;
Ghijsen, WEJM .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1998, 10 (01) :106-114
[7]  
Breukel AIM, 1998, J NEUROCHEM, V70, P341
[8]   Regulation of neurotransmitter release by metabotropic glutamate receptors [J].
Cartmell, J ;
Schoepp, DD .
JOURNAL OF NEUROCHEMISTRY, 2000, 75 (03) :889-907
[9]   REGULATION OF CARRIER-MEDIATED AND EXOCYTOTIC RELEASE OF (H-3)GABA IN RAT-BRAIN SYNAPTOSOMES [J].
CARVALHO, CM ;
BANDEIRADUARTE, C ;
FERREIRA, IL ;
CARVALHO, AP .
NEUROCHEMICAL RESEARCH, 1991, 16 (07) :763-772
[10]   Regulation of glutamate release by presynaptic kainate receptors in the hippocampus [J].
Chittajallu, R ;
Vignes, M ;
Dev, KK ;
Barnes, JM ;
Collingridge, GL ;
Henley, JM .
NATURE, 1996, 379 (6560) :78-81