Saveliev Anatoly, Khuzakhmetova Venera, Samigullin Dmitry, Skorinkin Andrey, Kovyazina Irina, Nikolsky Eugeny, Bukharaeva Ellya
Kazan Federal University, Kremlevskaya St. 18, Kazan, 420008, Russia.
Laboratory of the Biophysics of Synaptic Processes, Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, P.O. Box 30, Kazan, 420111, Russia.
J Comput Neurosci. 2015 Oct;39(2):119-29. doi: 10.1007/s10827-015-0567-3. Epub 2015 Jul 2.
The timing of transmitter release from nerve endings is considered nowadays as one of the factors determining the plasticity and efficacy of synaptic transmission. In the neuromuscular junction, the moments of release of individual acetylcholine quanta are related to the synaptic delays of uniquantal endplate currents recorded under conditions of lowered extracellular calcium. Using Bayesian modelling, we performed a statistical analysis of synaptic delays in mouse neuromuscular junction with different patterns of rhythmic nerve stimulation and when the entry of calcium ions into the nerve terminal was modified. We have obtained a statistical model of the release timing which is represented as the summation of two independent statistical distributions. The first of these is the exponentially modified Gaussian distribution. The mixture of normal and exponential components in this distribution can be interpreted as a two-stage mechanism of early and late periods of phasic synchronous secretion. The parameters of this distribution depend on both the stimulation frequency of the motor nerve and the calcium ions' entry conditions. The second distribution was modelled as quasi-uniform, with parameters independent of nerve stimulation frequency and calcium entry. Two different probability density functions for the distribution of synaptic delays suggest at least two independent processes controlling the time course of secretion, one of them potentially involving two stages. The relative contribution of these processes to the total number of mediator quanta released depends differently on the motor nerve stimulation pattern and on calcium ion entry into nerve endings.
如今,神经末梢递质释放的时机被视为决定突触传递可塑性和效能的因素之一。在神经肌肉接头处,单个乙酰胆碱量子的释放时刻与在细胞外钙浓度降低的条件下记录的单量子终板电流的突触延迟有关。利用贝叶斯建模,我们对小鼠神经肌肉接头在不同节律性神经刺激模式下以及钙离子进入神经末梢被改变时的突触延迟进行了统计分析。我们得到了一个释放时机的统计模型,它表现为两个独立统计分布的总和。其中第一个是指数修正高斯分布。该分布中正态和指数成分的混合可被解释为阶段性同步分泌早期和晚期的两阶段机制。该分布的参数既取决于运动神经的刺激频率,也取决于钙离子的进入条件。第二个分布被建模为准均匀分布,其参数与神经刺激频率和钙进入无关。突触延迟分布的两个不同概率密度函数表明至少有两个独立的过程控制着分泌的时间进程,其中一个可能涉及两个阶段。这些过程对释放递质量子总数的相对贡献因运动神经刺激模式和钙离子进入神经末梢的情况而异。