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纯化的皮质下板神经元中的突触发生

Synaptogenesis in purified cortical subplate neurons.

作者信息

McKellar Claire E, Shatz Carla J

机构信息

Department of Neurobiology, Harvard Medical School, 220 Longwood Ave., Boston, MA 02110, USA.

出版信息

Cereb Cortex. 2009 Aug;19(8):1723-37. doi: 10.1093/cercor/bhn194. Epub 2008 Nov 21.

Abstract

An ideal preparation for investigating events during synaptogenesis would be one in which synapses are sparse, but can be induced at will using a rapid, exogenous trigger. We describe a culture system of immunopurified subplate neurons in which synaptogenesis can be triggered, providing the first homogeneous culture of neocortical neurons for the investigation of synapse development. Synapses in immunopurified rat subplate neurons are sparse, and can be induced by a 48-h exposure to feeder layers of neurons and glia, an induction more rapid than any previously reported. Induced synapses are electrophysiologically functional and ultrastructurally normal. Microarray and real-time PCR experiments reveal a new program of gene expression accompanying synaptogenesis. Surprisingly few known synaptic genes are upregulated during the first 24 h of synaptogenesis; Gene Ontology annotation reveals a preferential upregulation of synaptic genes only at a later time. In situ hybridization confirms that some of the genes regulated in cultures are also expressed in the developing cortex. This culture system provides both a means of studying synapse formation in a homogeneous population of cortical neurons, and better synchronization of synaptogenesis, permitting the investigation of neuron-wide events following the triggering of synapse formation.

摘要

用于研究突触发生过程中事件的理想准备工作应是一种突触稀少,但可通过快速的外源性触发随意诱导突触形成的情况。我们描述了一种免疫纯化的亚板层神经元培养系统,在该系统中突触发生能够被触发,这为研究突触发育提供了首个新皮质神经元的同质培养物。免疫纯化的大鼠亚板层神经元中的突触稀少,并且通过暴露于神经元和神经胶质细胞饲养层48小时可诱导突触形成,这种诱导比之前报道的任何诱导方式都更快。诱导产生的突触在电生理功能和超微结构上都是正常的。微阵列和实时聚合酶链反应实验揭示了伴随突触发生的一个新的基因表达程序。令人惊讶的是,在突触发生的最初24小时内,上调的已知突触基因很少;基因本体注释显示,只有在较晚时候突触基因才会优先上调。原位杂交证实,培养物中受调控的一些基因在发育中的皮质中也有表达。这种培养系统既提供了一种在同质的皮质神经元群体中研究突触形成的方法,又能更好地同步突触发生,从而允许在突触形成触发后研究全神经元范围的事件。

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