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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Co-expression in Xenopus neurons and neuroendocrine cells of messenger RNA homologues of exocytosis proteins DOC2 and munc18-1.
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Co-expression in Xenopus neurons and neuroendocrine cells of messenger RNA homologues of exocytosis proteins DOC2 and munc18-1.

机译:胞吐蛋白DOC2和munc18-1的信使RNA同源物在非洲爪蟾神经元和神经内分泌细胞中的共表达。

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摘要

The proteins munc18-1 and DOC2 are assumed to play a role in docking of synaptic vesicles in neurotransmitter exocytosis at the presynaptic junction. As the proteins are known to interact, they should co-exist within neurons. We have tested this hypothesis for exocytosis of both classical and peptidergic messengers, by investigating the distribution of the messenger RNAs of munc 18-1 and DOC2 homologues in the brain and pituitary gland of the clawed toad Xenopus laevis, using in situ hybridization. For this purpose we cloned a partial complementary DNA encoding Xenopus unc18 (xunc18) and used a corresponding RNA probe, together with an RNA probe for Xenopus DOC2. At the messenger RNA level DOC2 and xunc18 were found to be expressed throughout the Xenopus brain. All brain nuclei expressing DOC2-messenger RNA showed xunc18-messenger RNA expression as well. Co-expression was shown at the individual cell level in consecutive sections of large-sized neurons. A strong expression was demonstrated in the suprachiasmatic and magnocellular nuclei and in peptidergic endocrine cells in the intermediate and anterior lobes of the pituitary gland, suggesting roles of DOC2 and xunc18 in messenger release from peptidergic secretory systems. Combined in situ hybridization and immunocytochemical analyses show that neuropeptide Y-containing cells in the suprachiasmatic nucleus also express DOC2 and xunc18 messenger RNAs. Since these cells have a high secretory activity, controlling the activity of the pituitary pars intermedia, the levels of expression of DOC2 and xunc18 may be indicators for neuronal secretory activity. The present data represent the first evidence for the co-existence of DOC2 and munc18-1 and suggest co-ordinate action of these proteins at the level of brain nuclei, individual neurons and endocrine cells.
机译:假定蛋白munc18-1和DOC2在突触前连接处神经递质胞吐作用中的突触小泡对接中发挥作用。由于已知蛋白质相互作用,因此它们应共存于神经元中。我们使用原位杂交技术,通过研究爪蟾蟾蜍爪蟾大脑和垂体中munc 18-1和DOC2同源物的信使RNA的分布,对经典信使和肽信使的胞吐进行了检验。为此,我们克隆了编码非洲爪蟾unc18(xunc18)的部分互补DNA,并使用了相应的RNA探针以及用于非洲爪蟾DOC2的RNA探针。在信使RNA水平,发现DOC2和xunc18在整个非洲爪蟾脑中表达。所有表达DOC2-信使RNA的脑核也显示xunc18-信使RNA表达。在大型神经元的连续切片中,在单个细胞水平显示共表达。在垂体上方和垂体上核中以及在垂体中叶和前叶的肽能内分泌细胞中显示出强表达,这表明DOC2和xunc18在肽能分泌系统的信使释放中的作用。结合原位杂交和免疫细胞化学分析表明,视交叉上核中含有神经肽Y的细胞也表达DOC2和xunc18信使RNA。由于这些细胞具有高分泌活性,可控制中间垂体的活性,因此DOC2和xunc18的表达水平可能是神经元分泌活性的指标。目前的数据代表了DOC2和munc18-1共存的第一个证据,并暗示了这些蛋白在脑核,单个神经元和内分泌细胞水平上的协同作用。

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