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中枢抑制性突触的传递。IV. 突触噪声的量子结构。

Transmission at a central inhibitory synapse. IV. Quantal structure of synaptic noise.

作者信息

Korn H, Faber D S

机构信息

Institut National de la Sante et de la Recherche Medicale, Departement des Biotechnologies, Institut Pasteur, Paris, France.

出版信息

J Neurophysiol. 1990 Jan;63(1):198-222. doi: 10.1152/jn.1990.63.1.198.

Abstract
  1. Continuous segments of synaptic noise were recorded, in 12 experiments, from the voltage-clamped goldfish Mauthner (M-)-cell soma during depolarizations beyond the Cl- equilibrium potential so that spontaneous inhibitory postsynaptic currents (IPSCs) were outward going, i.e., opposite in polarity to excitatory transients. Inhibitory components constituting the noise were detected with a program based on their expected waveforms, and their amplitude distributions were analyzed according to a quantal model to determine whether these responses, presumably because of asynchronous impulses in a population of presynaptic cells, were integral multiples of the same minimal unit. 2. Synaptic noise in the M-cell is predominantly inhibitory, as it is abolished by the glycine antagonist strychnine. IPSC amplitudes varied by 20-fold or more and about one-third were grouped in bursts, with one or several components often occurring during the falling phase of a preceding one. To measure individual amplitudes, a base-line correction procedure was designed to extrapolate the decay of the leading IPSC, on the assumption that it was exponential with a time constant, tau, equal to that obtained by fitting averaged waveforms of distinct IPSCs recorded in quiet periods. Currents were expressed in nanoamperes and, for comparison between experiments, as percentages of the full-sized IPSC evoked by activation of the collateral network. 3. The probability distribution functions (PDFs) of inhibitory events generated with such an analysis had from 5 to 12 clear and equally spaced peaks, larger transients not being included because of their sparsity. These PDFs were fit with a sum of Gaussians, on the assumption that all peaks were integral multiples of the smallest unit and had the same standard deviation, sigma. The fits were statistically satisfactory, according to a chi 2 test, and mean quantal size was 0.63 +/- 0.17% (SD; range, 0.42-1.0%) of the collateral IPSC. 4. In eight experiments, tetrodotoxin (TTX) was subsequently applied topically to block presynaptic impulses and isolate "miniature" responses because of single exocytotic events. It had no apparent nonspecific effects, as indicated by the constancy of M-cell input conductance (8.01 +/- 3.11 microS vs. 7.90 +/- 2.89 microS). Amplitude distributions of residual IPSCs were unimodal and Gaussian, with their mean size (0.60 +/- 0.19%) and average rise time (0.548 +/- 0.128 ms) the same as those of the first peaks of control histograms. The latter parameter was also comparable with that of unitary IPSCs studied previously. These results thus confirmed that spontaneous and evoked events are due to transmitter release from the same afferent population.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在12次实验中,当去极化超过氯离子平衡电位时,从电压钳制的金鱼Mauthner(M -)细胞胞体记录到连续的突触噪声段,使得自发抑制性突触后电流(IPSC)向外流动,即极性与兴奋性瞬变相反。使用基于预期波形的程序检测构成噪声的抑制成分,并根据量子模型分析其幅度分布,以确定这些反应(可能是由于一群突触前细胞中的异步冲动)是否为同一最小单位的整数倍。2. M细胞中的突触噪声主要是抑制性的,因为它被甘氨酸拮抗剂士的宁消除。IPSC幅度变化超过20倍,约三分之一成串出现,在前一个IPSC的下降阶段经常出现一个或几个成分。为了测量单个幅度,设计了一种基线校正程序来外推领先IPSC的衰减,假设其衰减是指数性的,时间常数tau等于通过拟合安静期记录的不同IPSC的平均波形获得的时间常数。电流以纳安表示,并且为了实验间的比较,以侧支网络激活诱发的全尺寸IPSC的百分比表示。3. 通过这种分析产生的抑制性事件的概率分布函数(PDF)有5到12个清晰且等间距的峰值,较大的瞬变由于其稀疏性未被包括在内。假设所有峰值都是最小单位的整数倍且具有相同的标准差sigma,这些PDF用高斯函数之和拟合。根据卡方检验,拟合在统计学上是令人满意的,平均量子大小为侧支IPSC的0.63±0.17%(标准差;范围,0.42 - 1.0%)。4. 在八次实验中,随后局部应用河豚毒素(TTX)来阻断突触前冲动并分离由于单个胞吐事件引起的“微小”反应。如M细胞输入电导的恒定所示(8.01±3.11微西门子对7.90±2.89微西门子),它没有明显的非特异性影响。残余IPSC的幅度分布是单峰且高斯分布的,其平均大小(0.60±0.19%)和平均上升时间(0.548±0.128毫秒)与对照直方图的第一个峰值相同。后一个参数也与先前研究的单位IPSC的参数相当。因此,这些结果证实自发事件和诱发事件是由于来自同一传入群体的递质释放。(摘要截断于400字)

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