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完整神经回路中环状AMP信号的时空动态变化

Spatio-temporal dynamics of cyclic AMP signals in an intact neural circuitm.

作者信息

Hempel C M, Vincent P, Adams S R, Tsien R Y, Selverston A I

机构信息

Department of Biology, Howard Hughes Medical Institute, University of California, San Diego, La Jolla 92093, USA.

出版信息

Nature. 1996 Nov 14;384(6605):166-9. doi: 10.1038/384166a0.

Abstract

The functional properties of neuronal networks can be reconfigured by a variety of modulatory neurotransmitters, which may alter the excitable properties of neurons or the strengths of synaptic connections. Many of these neuromodulators act via the intracellular second messenger cyclic AMP, but their effects on the spatial distribution of cAMP concentration have never been examined in an intact neural circuit. We therefore used the cAMP-indicator dye FICRhR (refs 1, 2) to investigate the effect of several neuromodulators (octopamine, dopamine, acetylcholine, serotonin and proctolin) on cAMP distribution in identified neurons of the lobster stomatogastric ganglion (STG). When added to the bath solution, each of these neuromodulators produced a unique pattern of cAMP transients among the different neurons of the STG. Electrical stimulation of neurons innervating the STG causes synaptic release of endogenous modulators, leading within a few seconds to local increases of cAMP in fine neurite branches, the site where many modulators are thought to act. After prolonged stimulation, cAMP diffuses from the site of production to throughout the neuritic tree and eventually to the cell body. Diffusion of cAMP may explain how transient localized inputs to a neuron can produce long-range effects such as long-term changes in gene expression.

摘要

神经网络的功能特性可被多种调节性神经递质重新配置,这些神经递质可能会改变神经元的兴奋性特性或突触连接的强度。许多这类神经调质通过细胞内第二信使环磷酸腺苷(cAMP)发挥作用,但它们对cAMP浓度空间分布的影响从未在完整的神经回路中进行过研究。因此,我们使用cAMP指示剂染料FICRhR(参考文献1、2)来研究几种神经调质(章鱼胺、多巴胺、乙酰胆碱、5-羟色胺和促肠肌肽)对龙虾口胃神经节(STG)中已识别神经元内cAMP分布的影响。当将这些神经调质中的每一种添加到浴液中时,它们在STG的不同神经元中均产生了独特模式的cAMP瞬变。对支配STG的神经元进行电刺激会导致内源性调质的突触释放,在几秒钟内使细神经突分支中的cAMP局部增加,而细神经突分支被认为是许多调质发挥作用的部位。长时间刺激后,cAMP从产生部位扩散到整个神经树,最终扩散到细胞体。cAMP的扩散可能解释了神经元的短暂局部输入如何能够产生诸如基因表达的长期变化等远程效应。

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