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成年大鼠脑片微型抑制性突触后电流的噪声分析:突触GABAA受体通道的特性与调节

Noise analysis of miniature IPSCs in adult rat brain slices: properties and modulation of synaptic GABAA receptor channels.

作者信息

De Koninck Y, Mody I

机构信息

Department of Neurology and Neurological Sciences, Stanford University School of Medicine, California 94305-5300.

出版信息

J Neurophysiol. 1994 Apr;71(4):1318-35. doi: 10.1152/jn.1994.71.4.1318.

Abstract
  1. The properties of synaptic gamma-aminobutyric acid (GABA)A receptor channels were resolved by using tight-seal, whole-cell recordings from granule cells of the dentate gyrus in adult rat hippocampal slices and by applying the technique of nonstationary noise analysis to study miniature inhibitory postsynaptic currents (mIPSCs) recorded in the presence of tetrodotoxin (TTX), 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX), and D-2-amino-5-phosphonovaleric acid (D-AP5). This technique allowed us to extract information about the conductance, the number, and the kinetics of ligand gated channels underlying elementary synaptic currents. 2. To ascertain the validity of the nonstationary noise analysis method we have first tested it on computer simulated mIPSCs with different channel activation, lifetime kinetics, and opening probabilities. Using intraburst mean open times, shorter than the time to the first opening following activation, caused a large variance at the peak due to the stochastic channel properties. This resulted in a skewed mean current-variance relationship, which precluded proper estimation of unit conductance and especially the number of channels open at the peak of mIPSCs. Regardless of the probability of channel opening, accurate estimates of the unit conductance and the number of channels underlying each simulated mIPSC were obtained when channels had mean open times longer than the time to first opening. 3. Once the validity of the nonstationary analysis had been ascertained, it was used on mIPSCs recorded at 35 degrees C. The unit conductance of the synaptic GABAA channels was 28 +/- 1 (SE) pS and the average number of channels underlying mIPSCs was 46 +/- 4. The mean current-variance relationship was not skewed at higher amplitudes, suggesting that the intrinsic variance at the peak of the GABAA mIPSCs is low and that the open time of the channels is longer than the time to first opening. The estimated unit conductance of the channels was constant over a wide range of holding potentials. 4. The amplitude distribution of mIPSCs with rapid 10-90% rise times (290 +/- 20 microseconds) was clearly skewed towards low values. This skew was not due to filtering of electrotonically distant currents. Current-variance analysis revealed that the skewness resulted from differences in the number of GABAA receptor channels and not from the heterogeneity of unitary conductances at various synapses. Selection of mIPSCs with slower rise times yielded smaller unit conductance estimates.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 通过在成年大鼠海马切片齿状回颗粒细胞上进行紧密封全细胞记录,并应用非平稳噪声分析技术来研究在河豚毒素(TTX)、6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)和D-2-氨基-5-磷酸戊酸(D-AP5)存在下记录的微小抑制性突触后电流(mIPSCs),解析了突触γ-氨基丁酸(GABA)A受体通道的特性。该技术使我们能够提取有关构成基本突触电流的配体门控通道的电导、数量和动力学的信息。2. 为了确定非平稳噪声分析方法的有效性,我们首先在具有不同通道激活、寿命动力学和开放概率的计算机模拟mIPSCs上对其进行了测试。使用爆发内平均开放时间,由于通道的随机特性,短于激活后首次开放的时间会导致峰值处出现较大方差。这导致平均电流-方差关系出现偏差,从而妨碍了对单位电导的正确估计,尤其是对mIPSCs峰值处开放通道数量的估计。无论通道开放的概率如何,当通道的平均开放时间长于首次开放时间时,都能获得对每个模拟mIPSC的单位电导和通道数量的准确估计。3. 一旦确定了非平稳分析的有效性,就将其应用于在35℃记录的mIPSCs。突触GABAA通道的单位电导为28±1(SE)pS,mIPSCs的平均通道数量为46±4。在较高幅度下,平均电流-方差关系没有偏差,这表明GABAA mIPSCs峰值处的内在方差较低,并且通道的开放时间长于首次开放时间。在很宽的钳制电位范围内,估计的通道单位电导是恒定的。4. 上升时间快速(10-90%为290±20微秒)的mIPSCs的幅度分布明显偏向低值。这种偏差不是由于电远距离电流的滤波。电流-方差分析表明,这种偏差是由于GABAA受体通道数量的差异,而不是由于不同突触处单位电导的异质性。选择上升时间较慢的mIPSCs会得到较小的单位电导估计值。(摘要截断于400字)

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