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原位杂交法显示大鼠脑中α1A肾上腺素能受体mRNA的分布

Distribution of alpha1A adrenergic receptor mRNA in the rat brain visualized by in situ hybridization.

作者信息

Domyancic A V, Morilak D A

机构信息

Department of Pharmacology, University of Texas Health Science Center at San Antonio, 78284-7764, USA.

出版信息

J Comp Neurol. 1997 Sep 29;386(3):358-78. doi: 10.1002/(sici)1096-9861(19970929)386:3<358::aid-cne3>3.0.co;2-0.

Abstract

Norepinephrine has been implicated in a number of physiological, behavioral, and cellular modulatory processes in the brain, and many of these modulatory effects are attributable to alpha1 adrenergic receptors. At least three alpha1 receptor subtypes have been identified by molecular criteria, designated alpha1A, alpha1B, and beta1D. The distributions of alpha1B and alpha1D receptor mRNA expression in rat brain have been described previously, but the cDNA for the rat alpha1A receptor has only recently been cloned and characterized. In the present study, we used a radiolabelled riboprobe derived from the rat alpha1A receptor cDNA to describe the distribution of alpha1A message expression in the rat brain. The highest levels of alpha1A adrenergic receptor mRNA expression were seen in the olfactory bulb, tenia tectae, horizontal diagonal band/magnocellular preoptic area, zona incerta, ventromedial hypothalamus, lateral mammillary nuclei, ventral dentate gyrus, piriform cortex, medial and cortical amygdala, magnocellular red nuclei, pontine nuclei, superior and lateral vestibular nuclei, brainstem reticular nuclei, and several cranial nerve motor nuclei. Dual in situ hybridization combining a radioactive riboprobe for choline acetyltransferase mRNA with a digoxigenin-labeled alpha1A riboprobe in the fifth and seventh cranial nerve motor nuclei showed that the alpha1A mRNA is expressed in cholinergic motor neurons. Prominent alpha1A hybridization signal was also seen in the neocortex, claustrum, lateral amygdala, ventral cochlear nucleus, raphe magnus, and in the ventral horn of thoracic spinal cord. This overall pattern of expression, considered in comparison with that previously described for the other alpha1 adrenergic receptor subtypes, may shed light on the different roles of the alpha1 receptors in mediating the neuromodulatory effects of norepinephrine in processes such as arousal, neuroendocrine control, sensorimotor regulation, and the stress response.

摘要

去甲肾上腺素与大脑中的许多生理、行为和细胞调节过程有关,其中许多调节作用归因于α1肾上腺素能受体。通过分子标准已鉴定出至少三种α1受体亚型,分别命名为α1A、α1B和β1D。先前已经描述了α1B和α1D受体mRNA在大鼠脑中的表达分布,但大鼠α1A受体的cDNA直到最近才被克隆和表征。在本研究中,我们使用源自大鼠α1A受体cDNA的放射性核糖探针来描述α1A信息在大鼠脑中的表达分布。在嗅球、视带、水平对角带/大细胞视前区、未定带、腹内侧下丘脑、外侧乳头体核、腹侧齿状回、梨状皮质、内侧和皮质杏仁核、大细胞红核、脑桥核、上外侧前庭核、脑干网状核和几个脑神经运动核中观察到α1A肾上腺素能受体mRNA的最高表达水平。在第五和第七脑神经运动核中,将用于胆碱乙酰转移酶mRNA的放射性核糖探针与地高辛标记的α1A核糖探针结合进行双重原位杂交,结果表明α1A mRNA在胆碱能运动神经元中表达。在新皮质、屏状核、外侧杏仁核、腹侧耳蜗核、中缝大核以及胸段脊髓腹角中也可见到明显的α1A杂交信号。与先前描述的其他α1肾上腺素能受体亚型的表达模式相比,这种整体表达模式可能有助于揭示α1受体在介导去甲肾上腺素在诸如觉醒、神经内分泌控制、感觉运动调节和应激反应等过程中的神经调节作用方面的不同作用。

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