Synapse-specific contribution of the variation of transmitter concentration to the decay of inhibitory postsynaptic currents

被引:89
作者
Nusser, Z
Naylor, D
Mody, I
机构
[1] Univ Calif Los Angeles, Sch Med, Dept Neurol, Reed Neurol Res Ctr, Los Angeles, CA 90095 USA
[2] VA Greater Los Angeles Hlth Care Syst, Los Angeles, CA 90095 USA
关键词
D O I
10.1016/S0006-3495(01)76101-2
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Synaptic transmission is characterized by a remarkable trial-to-trial variability in the postsynaptic response, influencing the way in which information is processed in neuronal networks. This variability may originate from the probabilistic nature of quantal transmitter release, from the stochastic behavior of the receptors, or from the fluctuation of the transmitter concentration in the cleft. We combined nonstationary noise analysis and modeling techniques to estimate the contribution of transmitter fluctuation to miniature inhibitory postsynaptic current (mlPSC) variability. A substantial variability (similar to 30%) in mlPSC decay was found in all cell types studied (neocortical layer2/3 pyramidal cells, granule cells of the olfactory bulb, and interneurons of the cerebellar molecular layer). This large variability was not solely the consequence of the expression of multiple types of GABA, receptors, as a similar mlPSC decay variability was observed in cerebellar interneurons that express only a single type (alpha (1)beta (2)gamma (2)) of GABA(A) receptor. At large synapses on these cells, all variance in mlPSC decay could be accounted for by the stochastic behavior of similar to 36 pS channels, consistent with the conductance of alpha (1)beta (2)gamma (2) GABA(A) receptors at physiological temperatures. In contrast, at small synapses, a significant amount of variability in the synaptic cleft GABA transient had to be present to account for the additional variance in IPSC decay over that produced by stochastic channel openings. Thus, our results suggest a synapse-specific contribution of the variation of the spatiotemporal profile of GABA to the decay of IPSCs.
引用
收藏
页码:1251 / 1261
页数:11
相关论文
共 51 条
[11]   Transmitter timecourse in the synaptic cleft: Its role in central synaptic function [J].
Clements, JD .
TRENDS IN NEUROSCIENCES, 1996, 19 (05) :163-171
[12]   THE TIME COURSE OF GLUTAMATE IN THE SYNAPTIC CLEFT [J].
CLEMENTS, JD ;
LESTER, RAJ ;
TONG, G ;
JAHR, CE ;
WESTBROOK, GL .
SCIENCE, 1992, 258 (5087) :1498-1501
[13]   ACTION OF BRIEF PULSES OF GLUTAMATE ON AMPA KAINATE RECEPTORS IN PATCHES FROM DIFFERENT NEURONS OF RAT HIPPOCAMPAL SLICES [J].
COLQUHOUN, D ;
JONAS, P ;
SAKMANN, B .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 458 :261-287
[14]  
Colquhoun David, 1995, P589
[15]   NOISE-ANALYSIS OF MINIATURE IPSCS IN ADULT-RAT BRAIN-SLICES - PROPERTIES AND MODULATION OF SYNAPTIC GABA(A), RECEPTOR CHANNELS [J].
DE KONINCK, Y ;
MODY, I .
JOURNAL OF NEUROPHYSIOLOGY, 1994, 71 (04) :1318-1335
[16]   QUANTAL COMPONENTS OF THE END-PLATE POTENTIAL [J].
DELCASTILLO, J ;
KATZ, B .
JOURNAL OF PHYSIOLOGY-LONDON, 1954, 124 (03) :560-573
[17]   INTRINSIC QUANTAL VARIABILITY DUE TO STOCHASTIC PROPERTIES OF RECEPTOR-TRANSMITTER INTERACTIONS [J].
FABER, DS ;
YOUNG, WS ;
LEGENDRE, P ;
KORN, H .
SCIENCE, 1992, 258 (5087) :1494-1498
[18]   Loose-patch recordings of single quanta at individual hippocampal synapses [J].
Forti, L ;
Bossi, M ;
Bergamaschi, A ;
Villa, A ;
Malgaroli, A .
NATURE, 1997, 388 (6645) :874-878
[19]   GABA(A)-RECEPTOR HETEROGENEITY IN THE ADULT-RAT BRAIN - DIFFERENTIAL REGIONAL AND CELLULAR-DISTRIBUTION OF 7 MAJOR SUBUNITS [J].
FRITSCHY, JM ;
MOHLER, H .
JOURNAL OF COMPARATIVE NEUROLOGY, 1995, 359 (01) :154-194
[20]  
Fritschy JM, 1998, J COMP NEUROL, V390, P194