Malgaroli A, Ting A E, Wendland B, Bergamaschi A, Villa A, Tsien R W, Scheller R H
Scientific Institute San Raffaele, Milan, Italy.
Science. 1995 Jun 16;268(5217):1624-8. doi: 10.1126/science.7777862.
Long-term potentiation has previously been studied with electrophysiological techniques that do not readily separate presynaptic and postsynaptic contributions. Changes in exocytotic-endocytotic cycling have now been monitored at synapses between cultured rat hippocampal neurons by measuring the differential uptake of antibodies that recognize the intraluminal domain of the synaptic vesicle protein synaptotagmin. Vesicular cycling increased markedly during glutamate-induced long-term potentiation. The degree of potentiation was heterogeneous, appearing greater at synapses at which the initial extent of vesicular turnover was low. Thus, changes in presynaptic activity were visualized directly and the spatial distribution of potentiation could be determined at the level of single synaptic boutons.
长期增强作用此前已通过电生理技术进行研究,这些技术难以轻易区分突触前和突触后的作用。现在,通过测量识别突触小泡蛋白突触结合蛋白腔内结构域的抗体的差异摄取,已在培养的大鼠海马神经元之间的突触处监测了胞吐 - 内吞循环的变化。在谷氨酸诱导的长期增强作用期间,小泡循环显著增加。增强程度是异质性的,在小泡周转初始程度较低的突触处似乎更大。因此,直接观察到了突触前活动的变化,并且可以在单个突触小体水平确定增强作用的空间分布。