首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Geometric considerations of nitric oxide-cyclic GMP signalling in the glomerular neuropil of the locust antennal lobe
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Geometric considerations of nitric oxide-cyclic GMP signalling in the glomerular neuropil of the locust antennal lobe

机译:刺槐触角小叶神经小球中一氧化氮-环GMP信号传导的几何考虑

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摘要

Using NADPH-diaphorase staining as a marker for nitric oxide (NO) synthase and an antiserum against cyclic GMP, we recently reported the anatomical distribution of nitric oxide donor and target cells in the antennal lobe, the principal olfactory neuropile of the locust. The most striking NADPH-diaphorase activity in the olfactory pathway is concentrated in a cluster of intensely stained local interneurons innervating the glomeruli. After incubation of tissue in a nitric oxide donor and inhibition of phospodiesterase activity, neurons of this cluster expressed cyclic GMP-immunoreactivity in the cell body and neurites. Here we examine the importance of the arrangement of NO donor and target cells for information processing in the glomeruli. The cellular organization of the NO-cyclic GMP system in olfactory interneurons, and the dendritic branching pattern, suggest that nitric oxide may not only act as intercellular, but also as intracellular messenger molecule in the glomerular neuropile of the antennal lobe. <br>
机译:使用NADPH-心肌黄酶染色法作为一氧化氮(NO)合酶的标记和针对环GMP的抗血清,我们最近报道了一氧化氮供体和靶细胞在触角叶中的解剖分布,触角叶是蝗虫的主要嗅觉神经堆。嗅觉途径中最显着的NADPH-黄递酶活性集中在支配肾小球的强烈染色的局部中间神经元簇中。在一氧化氮供体中孵育组织并抑制磷酸二酯酶活性后,该簇的神经元在细胞体和神经突中表达了环状GMP免疫反应性。在这里,我们研究了肾小球中NO供体和靶细胞的安排对于信息处理的重要性。 NO环GMP系统在嗅神经元中的细胞组织以及树突状分支模式表明,一氧化氮不仅可以充当触角小叶的肾小球神经堆中的细胞间信使分子,而且还可以充当细胞内信使分子。

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