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Effects of mobile buffers on facilitation: experimental and computational studies.

机译:流动缓冲液对促进作用的影响:实验和计算研究。

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摘要

Facilitation is an important form of short-term plasticity that occurs in most synapses. At crayfish neuromuscular junctions, basal transmission and facilitation were significantly reduced after presynaptic introduction of "fast" high-affinity calcium buffers, and the decay of facilitation was accelerated. The existence of residual calcium during facilitation was also demonstrated. Computational modeling of three-dimensional buffered Ca(2+) diffusion and binding to secretory and facilitation targets suggest that the facilitation site is located away from a secretory trigger mediating exocytosis; otherwise, the facilitation site would be saturated by each action potential. Our simulations account for many characteristics of facilitation and effects of exogenous buffer, and suggest that facilitation is caused by residual calcium gaining access to a site distinct from the secretory trigger through restricted diffusion.
机译:促进是大多数突触中发生的一种重要的短期可塑性形式。在小龙虾的神经肌肉连接处,突触前引入“快速”高亲和力钙缓冲液后,基础传递和促进作用明显降低,促进作用减弱。还证明了促进过程中残留钙的存在。三维缓冲的Ca(2+)扩散和绑定到分泌和促进目标的计算模型表明,促进站点的位置远离介导胞吐的分泌触发;否则,促进位点将被每个动作电位饱和。我们的模拟说明了促进作用的许多特征和外源缓冲液的作用,并表明促进作用是由于残余钙通过限制扩散进入与分泌触发物不同的部位而引起的。

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