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海马体突触的囊泡池分数大小和释放率的系统异质性。

Systematic heterogeneity of fractional vesicle pool sizes and release rates of hippocampal synapses.

机构信息

Department of Psychiatry and Psychotherapy, University of Erlangen-Nuremberg, Erlangen, Germany.

Department of Physiology, Faculty of Medicine, Jabriya, Kuwait University, Safat, Kuwait.

出版信息

Biophys J. 2011 Feb 2;100(3):593-601. doi: 10.1016/j.bpj.2010.12.3706.

Abstract

Hippocampal neurons in tissue culture develop functional synapses that exhibit considerable variation in synaptic vesicle content (20-350 vesicles). We examined absolute and fractional parameters of synaptic vesicle exocytosis of individual synapses. Their correlation to vesicle content was determined by activity-dependent discharge of FM-styryl dyes. At high frequency stimulation (30 Hz), synapses with large recycling pools released higher amounts of dye, but showed a lower fractional release compared to synapses that contained fewer vesicles. This effect gradually vanished at lower frequencies when stimulation was triggered at 20 Hz and 10 Hz, respectively. Live-cell antibody staining with anti-synaptotagmin-1-cypHer 5, and overexpression of synaptopHluorin as well as photoconversion of FM 1-43 followed by electron microscopy, consolidated the findings obtained with FM-styryl dyes. We found that the readily releasable pool grew with a power function with a coefficient of 2/3, possibly indicating a synaptic volume/surface dependency. This observation could be explained by assigning the rate-limiting factor for vesicle exocytosis at high frequency stimulation to the available active zone surface that is proportionally smaller in synapses with larger volumes.

摘要

在组织培养中,海马神经元发育出具有功能的突触,这些突触的突触小泡含量(20-350 个)存在相当大的差异。我们检查了单个突触的突触小泡胞吐作用的绝对和分数参数。通过 FM-苯乙烯染料的活性依赖性释放来确定它们与囊泡含量的相关性。在高频刺激(30 Hz)下,具有较大再循环池的突触释放出更多的染料,但与含有较少囊泡的突触相比,其分数释放较低。当刺激分别以 20 Hz 和 10 Hz 触发时,这种效应逐渐消失。用抗突触结合蛋白 1-cypHer5 的活细胞抗体染色、突触磷光蛋白的过表达以及 FM1-43 的光转化,然后进行电子显微镜检查,巩固了用 FM-苯乙烯染料获得的发现。我们发现,易释放池以幂函数的形式增长,系数为 2/3,这可能表明存在突触体积/表面积依赖性。这种观察结果可以通过将高频刺激时囊泡胞吐作用的限速因素分配给可用的活性区表面来解释,在体积较大的突触中,活性区表面比例较小。

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