Trommershäuser Julia, Schneggenburger Ralf, Zippelius Annette, Neher Erwin
Institute for Theoretical Physics, Georg-August University of Göttingen, Germany.
Biophys J. 2003 Mar;84(3):1563-79. doi: 10.1016/S0006-3495(03)74967-4.
We discuss a model of presynaptic vesicle dynamics, which allows for heterogeneity in release probability among vesicles. Specifically, we explore the possibility that synaptic activity is carried by two types of vesicles; first, a readily releasable pool and, second, a reluctantly releasable pool. The pools differ regarding their probability of release and time scales on which released vesicles are replaced by new ones. Vesicles of both pools increase their release probability during repetitive stimulation according to the buildup of Ca(2+) concentration in the terminal. These properties are modeled to fit data from the calyx of Held, a giant synapse in the auditory pathway. We demonstrate that this arrangement of two pools of releasable vesicles can account for a variety of experimentally observed patterns of synaptic depression and facilitation at this synapse. We conclude that synaptic transmission cannot be accurately described unless heterogeneity of synaptic release probability is taken into account.
我们讨论了一种突触前囊泡动力学模型,该模型允许囊泡之间的释放概率存在异质性。具体而言,我们探讨了突触活动由两种类型的囊泡承载的可能性:第一种是易于释放的池,第二种是难以释放的池。这两个池在释放概率以及释放的囊泡被新囊泡取代的时间尺度方面存在差异。在重复刺激期间,根据终末中Ca(2+)浓度的积累,两个池的囊泡都会增加其释放概率。这些特性被建模以拟合来自听觉通路中的巨型突触——Held壶腹的数据。我们证明,这种可释放囊泡的两个池的排列可以解释在这个突触处各种实验观察到的突触抑制和易化模式。我们得出结论,除非考虑突触释放概率的异质性,否则无法准确描述突触传递。
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