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大鼠Held壶腹内囊泡循环的两种模式。

Two modes of vesicle recycling in the rat calyx of Held.

作者信息

de Lange R P J, de Roos A D G, Borst J G G

机构信息

Department of Neuroscience, Erasmus MC, University Medical Center, 3000 DR Rotterdam, The Netherlands.

出版信息

J Neurosci. 2003 Nov 5;23(31):10164-73. doi: 10.1523/JNEUROSCI.23-31-10164.2003.

Abstract

Vesicle recycling was studied in the rat calyx of Held, a giant brainstem terminal involved in sound localization. Stimulation of brain slices containing the calyx-type synapse with a high extracellular potassium ion concentration in the presence of horseradish peroxidase resulted within several minutes in a reduction of the number of neurotransmitter vesicles and in the appearance of labeled endosome-like structures. After returning to normal solution, the endosome-like structures disappeared over a period of several minutes, whereas simultaneously the number of labeled vesicles increased. A comparison with afferent stimulation suggested that the endosome-like structures normally do not participate in the vesicle cycle. Afferent stimulation at 5 Hz resulted in sustained synaptic transmission, without vesicle depletion but with an estimated endocytotic activity of <0.2 synaptic vesicles per active zone per second. At 20 Hz, the presynaptic action potentials generally failed during prolonged stimulation. In identified synapses, the number of vesicles labeled by photoconversion after stimulation at 5 Hz in the presence of the styryl dye RH414 was much lower than the number of vesicles that were released, as determined by measuring EPSCs. No more than approximately 5% of the vesicles were labeled after 20 min stimulation at 5 Hz, whereas this stimulation protocol was sufficient to largely destain a terminal after previous loading. The results support a scheme for recycling in which two different modes coexist. At physiological demands, a pool of approximately 5% of all vesicles provides sufficient vesicles for release. During intense stimulation, such as occurs in the presence of high extracellular K+, the synapse resorts to bulk endocytosis, a very slow mode of recycling.

摘要

在大鼠的 Held 壶腹(参与声音定位的巨大脑干终末)中研究了囊泡循环。在辣根过氧化物酶存在的情况下,用高细胞外钾离子浓度刺激含有壶腹型突触的脑片,几分钟内神经递质囊泡数量减少,出现标记的内体样结构。回到正常溶液后,内体样结构在几分钟内消失,与此同时,标记囊泡的数量增加。与传入刺激的比较表明,内体样结构通常不参与囊泡循环。5Hz 的传入刺激导致持续的突触传递,没有囊泡耗竭,但估计每个活动区每秒的内吞活性<0.2 个突触囊泡。在 20Hz 时,长时间刺激期间突触前动作电位通常失败。在已识别的突触中,在存在苯乙烯基染料 RH414 的情况下,5Hz 刺激后通过光转换标记的囊泡数量远低于通过测量兴奋性突触后电流(EPSC)确定的释放囊泡数量。在 5Hz 刺激 20 分钟后,不超过约 5%的囊泡被标记,而这种刺激方案足以在先前加载后使终末大部分脱色。结果支持一种两种不同模式共存的循环方案。在生理需求下,所有囊泡中约 5%的一个池提供足够的囊泡用于释放。在强烈刺激期间,例如在高细胞外 K+存在的情况下发生的刺激,突触采用批量内吞作用,这是一种非常缓慢的循环模式。

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