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在嗅觉器官和大脑神经元中表达的龙虾GαS蛋白的分子克隆与特性分析

Molecular cloning and characterization of a lobster G alphaS protein expressed in neurons of olfactory organ and brain.

作者信息

Xu F, Hollins B, Gress A M, Landers T M, McClintock T S

机构信息

Department of Physiology, University of Kentucky, Lexington 40536-0084, U.S.A.

出版信息

J Neurochem. 1997 Nov;69(5):1793-800. doi: 10.1046/j.1471-4159.1997.69051793.x.

Abstract

We have isolated from an American lobster (Homarus americanus) olfactory organ cDNA library a clone, lobG alphaS, with >70% identity to mammalian and arthropod G alphaS sequences. In genomic Southern blots, a fragment of lobG alphaS detected only one band, suggesting the lobsters have a single G alphaS gene. In brain and olfactory organ, lobG alphaS mRNA was expressed predominantly in neurons, including many of the neuronal cell body clusters of the brain. G alphaS protein was also expressed broadly, appearing on western blots as a band of 51.8 kDa in brain, eyestalk, pereiopod, dactyl, tail muscle, olfactory organ, and aesthetasc hairs. These results suggest that lobG alphaS plays a role in a wide variety of signal transduction events. Its presence in the olfactory aesthetasc hairs, which are almost pure preparations of the outer dendrites of the olfactory receptor neurons, and the expression of lobG alphaS mRNA in the olfactory receptor neurons of the olfactory organ indicate that lobG alphaS may mediate olfactory transduction. That virtually all ORNs express lobG alphaS mRNA equally predicts that hyperpolarizing odor responses mediated by cyclic AMP are a property of all lobster olfactory receptor neurons.

摘要

我们从美洲龙虾(美洲螯龙虾)的嗅觉器官cDNA文库中分离出一个克隆体lobG alphaS,它与哺乳动物和节肢动物的G alphaS序列有超过70%的同源性。在基因组Southern印迹分析中,lobG alphaS的一个片段仅检测到一条带,这表明龙虾有一个单一的G alphaS基因。在脑和嗅觉器官中,lobG alphaS mRNA主要在神经元中表达,包括脑中的许多神经元细胞体簇。G alphaS蛋白也广泛表达,在蛋白质印迹上,在脑、眼柄、步足、指节、尾肌、嗅觉器官和嗅觉刚毛中呈现为一条51.8 kDa的带。这些结果表明lobG alphaS在多种信号转导事件中起作用。它存在于嗅觉刚毛中,而嗅觉刚毛几乎是嗅觉受体神经元外树突的纯制剂,并且lobG alphaS mRNA在嗅觉器官的嗅觉受体神经元中表达,这表明lobG alphaS可能介导嗅觉转导。几乎所有嗅觉受体神经元均同等表达lobG alphaS mRNA,这预示着由环磷酸腺苷介导的超极化气味反应是所有龙虾嗅觉受体神经元的特性。

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