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细胞色素氧化酶活性作为海兔多功能神经元L7突触形成的一种衡量指标。

Cytochrome oxidase activity as a measure of synaptogenesis by multifunctional neuron L7 of Aplysia.

作者信息

Ambron R T, Dotty S B, Goldberg D J, Smedman M

机构信息

Department of Anatomy and Cell Biology, College of Physicians and Surgeons, Columbia University, New York 10032.

出版信息

J Neurobiol. 1991 Sep;22(6):605-16. doi: 10.1002/neu.480220606.

Abstract

Neuron L7 of the marine mollusc, Aplysia californica, is unique in that it innervates five different target tissues in the animal. We show that when L7 is grown in vitro with two of these targets, that is, muscle cells isolated from the auricle or the gill vein, newly formed L7 neurites contact the muscle cells. Chemical synapses are formed since intracellular stimulation of L7 elicits contraction of individual muscle cells. Interestingly, auricle muscles are also innervated by neuron RBhe and co-cultures of RBhe and auricle muscle cells also exhibit synapse formation. To explore the molecular basis for synaptogenesis between L7 and its targets, it would be useful to quantify the extent of synapse formation in vitro, that is, to determine how many muscle cells can be innervated by a single L7. We show that this can be attained by staining for cytochrome oxidase activity. Cultures of auricle and gill vein muscles were exposed to the appropriate neurotransmitter in order to elicit contraction. The cells were then fixed and stained. In both cases, only cells that contracted were stained and electron microscopy showed reaction product associated with the cristae of mitochondria. When this procedure was applied to cultures of L7 and muscle cells, 38 +/- 2.8% (S.E.M.; n = 7) of the cells on the neurites were stained and therefore responded to L7 stimulation. Thus, part of the L7-RBhe circuit can be assembled in vitro and the extent of synaptogenesis can be accurately quantitated.

摘要

海生软体动物加州海兔的神经元L7很独特,因为它支配该动物体内五种不同的靶组织。我们发现,当L7在体外与其中两种靶组织一起培养时,即与从耳或鳃静脉分离出的肌肉细胞一起培养时,新形成的L7神经突会与肌肉细胞接触。由于对L7进行细胞内刺激会引起单个肌肉细胞收缩,所以形成了化学突触。有趣的是,耳肌也受神经元RBhe支配,并且RBhe与耳肌细胞的共培养物也表现出突触形成。为了探究L7与其靶组织之间突触形成的分子基础,在体外对突触形成的程度进行量化将很有用,也就是说,要确定单个L7能支配多少个肌肉细胞。我们发现这可以通过对细胞色素氧化酶活性进行染色来实现。将耳和鳃静脉肌肉的培养物暴露于适当的神经递质以引发收缩。然后将细胞固定并染色。在这两种情况下,只有收缩的细胞被染色,并且电子显微镜显示反应产物与线粒体嵴相关。当将此程序应用于L7和肌肉细胞的培养物时,神经突上38±2.8%(标准误;n = 7)的细胞被染色,因此对L7刺激有反应。因此,L7 - RBhe回路的一部分可以在体外组装,并且突触形成的程度可以被准确量化。

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