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突触前释放装置在没有树突接触的情况下仍能发挥功能,并且在分离的轴突内具有高度的移动性。

The presynaptic release apparatus is functional in the absence of dendritic contact and highly mobile within isolated axons.

作者信息

Krueger Stefan R, Kolar Annette, Fitzsimonds Reiko Maki

机构信息

Department of Cellular and Molecular Physiology, Yale University School of Medicine, 333 Cedar Street, New Haven, CT 06520, USA.

出版信息

Neuron. 2003 Dec 4;40(5):945-57. doi: 10.1016/s0896-6273(03)00729-3.

Abstract

Whether contact of an axon with a dendrite is a necessary inductive signal for the assembly of functional presynaptic machinery is controversial. Combining FM1-43 imaging with retrospective immunocytochemistry, we observe many functional synaptic vesicle (SV) release sites lacking postsynaptic specializations in cultured hippocampal neurons. These "orphan" release sites share the same exocytic machinery and mechanisms of endocytic recycling as mature synaptic sites. Moreover, quantitative analysis of FM1-43 destaining at these orphan release sites reveals similar kinetics with slightly lower release probabilities. Time-lapse imaging of FM1-43 reveals that orphans are generated by complete or partial mobilization of synaptic release sites that retain their functionality in transit. Orphan clusters fuse with existing synaptic release sites or form novel release sites onto dendrites. Mobilization and stabilization of orphan boutons to new sites of dendritic contact may represent a necessary presynaptic counterpart to postsynaptic changes observed during development and plasticity in the CNS.

摘要

轴突与树突的接触对于功能性突触前机制的组装是否是必要的诱导信号存在争议。将FM1-43成像与回顾性免疫细胞化学相结合,我们在培养的海马神经元中观察到许多缺乏突触后特化的功能性突触小泡(SV)释放位点。这些“孤立”的释放位点与成熟突触位点共享相同的胞吐机制和内吞循环机制。此外,对这些孤立释放位点处FM1-43去染色的定量分析显示,其动力学相似,但释放概率略低。FM1-43的延时成像显示,孤立位点是由在转运过程中保留其功能的突触释放位点完全或部分动员产生的。孤立簇与现有的突触释放位点融合,或在树突上形成新的释放位点。孤立终扣向新的树突接触位点的动员和稳定可能代表了中枢神经系统发育和可塑性过程中观察到的突触后变化所必需的突触前对应物。

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