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突触结合蛋白维持果蝇突触前终扣中储备囊泡池和循环池的空间隔离。

Synapsin maintains the reserve vesicle pool and spatial segregation of the recycling pool in Drosophila presynaptic boutons.

作者信息

Akbergenova Yulia, Bykhovskaia Maria

机构信息

Department of Biological Sciences, Lehigh University, 111 Research Dr., Bethlehem, PA 18015, USA.

出版信息

Brain Res. 2007 Oct 31;1178:52-64. doi: 10.1016/j.brainres.2007.08.042. Epub 2007 Aug 24.

Abstract

We employed optical detection of the lipophylic dye FM1-43 and focal recordings of quantal release to investigate how synapsin affects vesicle cycling at the neuromuscular junction of synapsin knockout (Syn KO) Drosophila. Loading the dye employing high K+ stimulation, which presumably involves the recycling pool of vesicles in exo/endocytosis, stained the periphery of wild type (WT) boutons, while in Syn KO the dye was redistributed towards the center of the bouton. When endocytosis was promoted by cyclosporin A pretreatment, the dye uptake was significantly enhanced in WT boutons, and the entire boutons were stained, suggesting staining of the reserve vesicle pool. In Syn KO boutons, the same loading paradigm produced fainter staining and significantly faster destaining. When the axon was stimulated electrically, a distinct difference in dye loading patterns was observed in WT boutons at different stimulation frequencies: a low stimulation frequency (3 Hz) produced a ring-shaped staining pattern, while at a higher frequency (10 Hz) the dye was redistributed towards the center of the bouton and the fluorescence intensity was significantly increased. This difference in staining patterns was essentially disrupted in Syn KO boutons, although synapsin did not affect the rate of quantal release. Stimulation of the nerve in the presence of bafilomycin, the blocker of the transmitter uptake, produced significantly stronger depression in Syn KO boutons. These results, taken together, suggest that synapsin maintains the reserve pool of vesicles and segregation between the recycling and reserve pools, and that it mediates mobilization of the reserve pool during intense stimulation.

摘要

我们利用亲脂性染料FM1-43的光学检测和量子释放的焦点记录,来研究突触结合蛋白如何影响突触结合蛋白基因敲除(Syn KO)果蝇神经肌肉接头处的囊泡循环。采用高钾刺激加载染料,这可能涉及胞吐/内吞作用中囊泡的循环池,可使野生型(WT)轴突末梢的周边染色,而在Syn KO果蝇中,染料重新分布到轴突末梢的中心。当用环孢菌素A预处理促进内吞作用时,WT轴突末梢的染料摄取显著增强,整个轴突末梢都被染色,表明储备囊泡池被染色。在Syn KO轴突末梢,相同的加载模式产生的染色较淡且褪色明显更快。当电刺激轴突时,在不同刺激频率下,WT轴突末梢观察到明显不同的染料加载模式:低刺激频率(3 Hz)产生环形染色模式,而在较高频率(10 Hz)下,染料重新分布到轴突末梢的中心,荧光强度显著增加。尽管突触结合蛋白不影响量子释放的速率,但这种染色模式的差异在Syn KO轴突末梢中基本消失。在存在巴弗洛霉素(递质摄取阻滞剂)的情况下刺激神经,Syn KO轴突末梢产生的抑制作用明显更强。综上所述,这些结果表明突触结合蛋白维持囊泡的储备池以及循环池和储备池之间的分隔,并且它在强烈刺激期间介导储备池的动员。

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