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一种用于阐明突触前终末蛋白质功能的胆碱能模型突触。

A cholinergic model synapse to elucidate protein function at presynaptic terminals.

作者信息

Ma Huan, Mochida Sumiko

机构信息

Department of Physiology, Tokyo Medical University, 1-1, Shinjuku-6-chome, Shinjuku-ku, Tokyo 160-8402, Japan.

出版信息

Neurosci Res. 2007 Apr;57(4):491-8. doi: 10.1016/j.neures.2006.12.015. Epub 2007 Jan 10.

Abstract

A large number of proteins have been identified at nerve terminals and a cascade of protein-protein interactions has been suggested to be involved in cycling of synaptic vesicle states. To explore protein function in presynaptic terminals, only a few unique synapses such as the squid giant synapse, the calyx of Held synapse and the hippocampal neuron autapse have been used. The squid giant synapse and the calyx of Held are useful to introduce reagents into their large presynaptic terminals and the hippocampal neuron autapse is a good system to modify a protein level by exogenous DNA or RNA. The cholinergic synapse formed between superior cervical ganglion (SCG) neurons in long-term culture is a useful model for a fast synapse. The axon of the large cell body contacts with soma of neighboring neurons. The architecture of synaptic connections makes it possible to introduce reagents into the presynaptic terminals by diffusion from a cell body within a short time. Introduction of exogenous cDNA or siRNA performed by microinjection into a SCG neuron allows us to modulate the level of the protein of interest or to express mutant proteins in the neuron. Here, we describe use of the model SCG neuronal synapse to elucidate function of presynaptic proteins in mediating synaptic transmission.

摘要

大量蛋白质已在神经末梢被鉴定出来,并且有人提出一系列蛋白质 - 蛋白质相互作用参与了突触小泡状态的循环。为了探究突触前末梢中的蛋白质功能,仅使用了少数独特的突触,如乌贼巨大突触、Held 壶腹突触和海马神经元自突触。乌贼巨大突触和 Held 壶腹对于将试剂引入其较大的突触前末梢很有用,而海马神经元自突触是通过外源 DNA 或 RNA 修改蛋白质水平的良好系统。长期培养的颈上神经节(SCG)神经元之间形成的胆碱能突触是快速突触的有用模型。大细胞体的轴突与相邻神经元的胞体接触。突触连接的结构使得在短时间内通过从细胞体扩散将试剂引入突触前末梢成为可能。通过显微注射将外源 cDNA 或 siRNA 引入 SCG 神经元,使我们能够调节感兴趣蛋白质的水平或在神经元中表达突变蛋白。在此,我们描述了使用模型 SCG 神经元突触来阐明突触前蛋白质在介导突触传递中的功能。

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