Quantal size is independent of the release probability at hippocampal excitatory synapses

被引:72
作者
Biró, AA [1 ]
Holderith, NB [1 ]
Nusser, Z [1 ]
机构
[1] Hungarian Acad Sci, Inst Expt Med, Lab Cellular Neurophysiol, H-1083 Budapest, Hungary
基金
英国惠康基金;
关键词
patch clamp; paired recordings; electron microscopy; quantal analysis; hippocampus; interneurons;
D O I
10.1523/JNEUROSCI.3688-04.2005
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Short-term synaptic plasticity changes the reliability of transmission during repetitive activation and allows different neuronal ensembles to encode distinct features of action potential trains. Identifying the mechanisms and the locus of expression of such plasticity is essential for understanding neuronal information processing. To determine the quantal parameters and the locus of alterations during short-term plasticity of cortical glutamatergic synapses, EPSCs were evoked in hippocampal oriens-alveus interneurons by CA1 pyramidal cells. The robust short-term facilitation of this connection allowed us to examine the transmission under functionally relevant but widely different release probability (P-r) conditions. Paired whole-cell recordings permitted the functional and post hoc morphological characterization of the synapses. To determine the quantal size (q), the P-r, and the number of functional release sites (N-F), two independent quantal analysis methods were used. Light and electron microscopy were performed to identify the number of synaptic junctions (N-EM) between the recorded cells. The mean number of functional release sites (N-F(f) = 2.9 +/- 0.4; n = 8) as inferred from a simple binomial model with no quantal variance agreed well with the mean of N-EM (2.8 +/- 0.8; n = 6), but N-F(f) never matched N-EM when they were compared in individual pairs; however, including quantal variance in the model improved the functional prediction of the structural data. Furthermore, an increased P-r (4.8 +/- 0.8-fold) fully accounted for the marked short-term facilitation of EPSCs (5.0 +/- 0.7-fold), and q was independent of P-r. Our results are consistent with the "one-release site, one-vesicle" hypothesis.
引用
收藏
页码:223 / 232
页数:10
相关论文
共 55 条
[21]   Synaptic currents at individual connections among stellate cells in rat cerebellar slices [J].
Kondo, S ;
Marty, A .
JOURNAL OF PHYSIOLOGY-LONDON, 1998, 509 (01) :221-232
[22]   TRANSMISSION AT A CENTRAL INHIBITORY SYNAPSE .2. QUANTAL DESCRIPTION OF RELEASE, WITH A PHYSICAL CORRELATE FOR BINOMIAL-N [J].
KORN, H ;
MALLET, A ;
TRILLER, A ;
FABER, DS .
JOURNAL OF NEUROPHYSIOLOGY, 1982, 48 (03) :679-707
[23]   FLUCTUATING RESPONSES AT A CENTRAL SYNAPSE - N OF BINOMIAL FIT PREDICTS NUMBER OF STAINED PRESYNAPTIC BOUTONS [J].
KORN, H ;
TRILLER, A ;
MALLET, A ;
FABER, DS .
SCIENCE, 1981, 213 (4510) :898-901
[24]  
KORN H, 1994, ONE VESICLE HYPOTHES
[25]   Extrasynaptic glutamate spillover in the hippocampus: evidence and implications [J].
Kullmann, DM ;
Asztely, F .
TRENDS IN NEUROSCIENCES, 1998, 21 (01) :8-14
[26]   Quantal transmission at mossy fibre targets in the CA3 region of the rat hippocampus [J].
Lawrence, JJ ;
Grinspan, ZM ;
McBain, CJ .
JOURNAL OF PHYSIOLOGY-LONDON, 2004, 554 (01) :175-193
[27]   Cell type dependence and variability in the short-term plasticity of EPSCs in identified mouse hippocampal interneurones [J].
Losonczy, A ;
Zhang, LM ;
Shigemoto, R ;
Somogyi, P ;
Nusser, Z .
JOURNAL OF PHYSIOLOGY-LONDON, 2002, 542 (01) :193-210
[28]   Estimation of quantal size and number of functional active zones at the calyx of Held synapse by nonstationary EPSC variance analysis [J].
Meyer, AC ;
Neher, E ;
Schneggenburger, R .
JOURNAL OF NEUROSCIENCE, 2001, 21 (20) :7889-7900
[29]   Heterogeneous release properties of visualized individual hippocampal synapses [J].
Murthy, VN ;
Sejnowski, TJ ;
Stevens, CF .
NEURON, 1997, 18 (04) :599-612
[30]   The number of glutamate receptors opened by synaptic stimulation in single hippocampal spines [J].
Nimchinsky, EA ;
Yasuda, R ;
Oertner, TG ;
Svoboda, K .
JOURNAL OF NEUROSCIENCE, 2004, 24 (08) :2054-2064