Borst J G, Kits K S, Bier M
Department of Biology, Vrije Universiteit, Amsterdam, The Netherlands.
Biophys J. 1994 Jul;67(1):183-9. doi: 10.1016/S0006-3495(94)80468-0.
We have studied the variance in the decay of large spontaneous gamma-aminobutyric acid (GABA)-ergic inhibitory postsynaptic currents (IPSCs) in melanotropes of Xenopus laevis to obtain information about the number of GABAA receptor channels that bind GABA during the IPSCs. The average decay of the IPSCs is well described by the sum of two exponential functions. This suggests that a three-state Markov model is sufficient to describe the decay phase, with one of the three states being an absorbing state, entered when GABA dissociates from the GABAA receptor. We have compared the variance in the decay of large spontaneous IPSCs with the variance calculated for two different three-state models: a model with one open state, one closed state, and one absorbing state (I), and a model with two open states and one absorbing state (II). The data were better described by the more efficient model II. This suggests that the efficacy of GABA at synaptic GABAA receptor channels is high and that only a small number of channels are involved in generating the GABA-ergic IPSCs.
我们研究了非洲爪蟾促黑素细胞中大型自发性γ-氨基丁酸(GABA)能抑制性突触后电流(IPSCs)衰减的方差,以获取有关在IPSCs期间结合GABA的GABAA受体通道数量的信息。IPSCs的平均衰减可用两个指数函数之和很好地描述。这表明三态马尔可夫模型足以描述衰减阶段,三个状态之一为吸收态,当GABA从GABAA受体解离时进入该状态。我们将大型自发性IPSCs衰减的方差与针对两种不同三态模型计算的方差进行了比较:一种模型具有一个开放态、一个关闭态和一个吸收态(I),另一种模型具有两个开放态和一个吸收态(II)。数据用效率更高的模型II能更好地描述。这表明GABA在突触GABAA受体通道处的效能很高,并且只有少数通道参与产生GABA能IPSCs。