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首页> 外文期刊>The Journal of Comparative Neurology >Nicotinic acetylcholine receptors in rat cochlear nucleus: (125I)-alpha-bungarotoxin receptor autoradiography and in situ hybridization of alpha 7 nAChR subunit mRNA.
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Nicotinic acetylcholine receptors in rat cochlear nucleus: (125I)-alpha-bungarotoxin receptor autoradiography and in situ hybridization of alpha 7 nAChR subunit mRNA.

机译:大鼠耳蜗核中的烟碱乙酰胆碱受体:(125I)-α-邦格鲁毒素受体放射自显影和α7nAChR亚基mRNA的原位杂交。

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The cochlear nucleus (CN) is the first site in the central nervous system (CNS) for processing auditory information. Acetylcholine in the CN is primarily extrinsic and is an important neurotransmitter in efferent pathways thought to provide CNS modulation of afferent signal processing. Although muscarinic acetylcholine receptors have been studied in the CN, the role of nicotinic receptors has not. We examined the distribution of one nicotinic acetylcholine receptor subtype, the alpha-bungarotoxin receptor (alpha Bgt), in the CN. Quantitative autoradiography was used to localize receptors and in situ hybridization was used to localize alpha 7 mRNA in CN neurons that express the alpha Bgt receptor. Binding sites for alpha Bgt are abundant in the anterior ventral, posterior ventral, and dorsal divisions of the CN, and receptor density is low in the granule cell layer and interstitial nucleus. Heterogeneity in CN subregions is described. Four distinct patterns of alpha Bgt binding were observed: (1) binding over and around neuronal cell bodies, (2) receptors locally surrounding neurons, (3) dense punctate binding in the dorsal CN (DCN) not associated with neuronal cell bodies, and (4) diffuse fields of alpha Bgt receptors prominent in the DCN molecular layer, a field underlying the granule cell layer and in the medial sheet. The perikaryial receptors are abundant in the ventral CN (VCN) and are always associated with neurons expressing mRNA for the receptor. Other neurons in the VCN also express alpha 7 mRNA, but without alpha Bgt receptor expression associated with the cell body. In general, alpha Bgt receptor distribution parallels cholinergic terminal distribution, except in granule cell regions rich in cholinergic markers but low in alpha Bgt receptors. The findings indicate that alpha Bgt receptors are widespread in the CN but are selectively localized on somata, proximal dendrites, or distal dendrites depending on the specific CN subregion. The data are consistent with the hypothesis that descending cholinergic fibers modulate afferent auditory signals by regulating intracellular Ca2+ through alpha Bgt receptors.
机译:耳蜗核(CN)是中枢神经系统(CNS)中处理听觉信息的第一个位置。 CN中的乙酰胆碱主要是外在的,并且在传出途径中是重要的神经递质,被认为可提供CNS对传入信号处理的调节。尽管已在CN中研究了毒蕈碱型乙酰胆碱受体,但尚未发现烟碱样受体的作用。我们检查了一种烟碱型乙酰胆碱受体亚型,即α-真菌毒素受体(αBgt)在CN中的分布。定量放射自显影用于定位受体,原位杂交用于定位表达αBgt受体的CN神经元中的α7 mRNA。 αBgt的结合位点在CN的前腹,后腹和背侧分区中丰富,并且在颗粒细胞层和间质核中受体密度低。描述了CN子区域中的异质性。观察到四种不同的alpha Bgt结合模式:(1)在神经元细胞体上和周围结合,(2)神经元周围的受体,(3)在背神经(DCN)中与神经元细胞体无关的密集点状结合,以及(4)在DCN分子层,颗粒细胞层下方和内侧片中突出的αBgt受体弥散区。腹侧CN(VCN)中存在大量的角周受体,并且始终与表达该受体mRNA的神经元相关。 VCN中的其他神经元也表达alpha 7 mRNA,但没有与细胞体相关的alpha Bgt受体表达。通常,除了在富含胆碱能标记物但在αBgt受体含量低的颗粒细胞区域中,αBgt受体的分​​布与胆碱能的末端分布平行。这些发现表明,αBgt受体在CN中广泛分布,但根据特定的CN子区域,选择性地定位在躯体,近端树突或远端树突上。数据与以下假设相符:胆碱能下降纤维通过αBgt受体调节细胞内Ca2 +来调节传入的听觉信号。

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