Shen Wanhua, Wu Bei, Zhang Zhijun, Dou Ying, Rao Zhi-Ren, Chen Yi-Ren, Duan Shumin
Institute of Neuroscience and Key Laboratory of Neurobiology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Neuron. 2006 May 4;50(3):401-14. doi: 10.1016/j.neuron.2006.03.017.
Maturation of presynaptic transmitter secretion machinery is a critical step in synaptogenesis. Here we report that a brief train of presynaptic action potentials rapidly converts early nonfunctional contacts between cultured hippocampal neurons into functional synapses by enhancing presynaptic glutamate release. The enhanced release was confirmed by a marked increase in the number of depolarization-induced FM4-64 puncta in the presynaptic axon. This rapid presynaptic maturation can be abolished by treatments that interfered with presynaptic BDNF and Cdc42 signaling or actin polymerization. Activation of Cdc42 by applying BDNF or bradykinin mimicked the effect of electrical activity in promoting synaptic maturation. Furthermore, activity-induced increase in presynaptic actin polymerization, as revealed by increased concentration of actin-YFP at axon boutons, was abolished by inhibiting BDNF and Cdc42 signaling. Thus, rapid presynaptic maturation induced by neuronal activity is mediated by presynaptic activation of the Cdc42 signaling pathway.
突触前递质分泌机制的成熟是突触形成过程中的关键步骤。在此,我们报告,通过增强突触前谷氨酸释放,一串短暂的突触前动作电位能迅速将培养的海马神经元之间早期无功能的接触转化为功能性突触。突触前轴突中去极化诱导的FM4-64斑点数量显著增加,证实了释放增强。干扰突触前BDNF和Cdc42信号传导或肌动蛋白聚合的处理可消除这种快速的突触前成熟。通过应用BDNF或缓激肽激活Cdc42可模拟电活动促进突触成熟的作用。此外,轴突终扣处肌动蛋白-YFP浓度增加表明,抑制BDNF和Cdc42信号传导可消除活动诱导的突触前肌动蛋白聚合增加。因此,神经元活动诱导的快速突触前成熟是由Cdc42信号通路的突触前激活介导的。