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大鼠前脑和脑桥上段中毒蕈碱型乙酰胆碱受体样免疫反应性的显示

Demonstration of muscarinic acetylcholine receptor-like immunoreactivity in the rat forebrain and upper brainstem.

作者信息

van der Zee E A, Matsuyama T, Strosberg A D, Traber J, Luiten P G

机构信息

Department of Animal Physiology, University of Groningen, Haren, The Netherlands.

出版信息

Histochemistry. 1989;92(6):475-85. doi: 10.1007/BF00524759.

Abstract

The distribution of muscarinic acetylcholine receptor protein (mAChR) in the rat forebrain and upper brainstem was described by using a monoclonal antibody (M35) raised against mAChR purified from bovine forebrain homogenates. A method is investigated for light microscopic (LM) and electronmicroscopic (EM) immunocytochemical visualization of reactivity to mAChR-proteins. Putative cholinoceptive neurons including their dendrites were found immunoreactive in the cortical mantle, hippocampus, basal ganglia, amygdala, thalamus and several midbrain regions. In the neocortex, immunoprecipitate with M35 was mainly present in layer 5 pyramidal cells, some layer 3 pyramidal neurons and layer 2 stellate cells, all including their characteristic dendritic profiles of both basal and apical dendrites. In the hippocampus, a variety of pyramidal, granular and non-pyramidal celltypes were stained in various hippocampal cell layers, in the dentate hilus and in stratum oriens of cornu ammonis. Moreover, positively reacting cells occurred in central and lateral amygdala, all parts of the basal ganglia and ventral pallidum. The thalamus was very richly provided with labeled neurons in several nuclei but notably numerous in the ventrolateral, anteroventral and geniculate nuclei. In cortex and hippocampus also some staining of astrocytes occurred. Electron microscopic study of the intracellular distribution of M35 immunoreactivity in all cases showed dense precipitates in the soma cytoplasm in close association with the golgi apparatus, but conspicuous absence near the endoplasmic reticulum. Immunoprecipitate can be followed within the dendritic tree along the microtubular transport system, up to proximal and distal postsynaptic membrane positions, apposing non labeled presynaptic endings. Muscarinic receptor subtype recognition by M35 will be discussed by comparing M35 distribution with cholinergic innervation patterns, muscarinic receptor ligand binding studies and localization of muscarinic receptor subtype mRNAs.

摘要

利用一种针对从牛前脑匀浆中纯化的毒蕈碱型乙酰胆碱受体(mAChR)产生的单克隆抗体(M35),描述了大鼠前脑和上脑干中毒蕈碱型乙酰胆碱受体蛋白(mAChR)的分布情况。研究了一种用于光镜(LM)和电镜(EM)免疫细胞化学可视化mAChR蛋白反应性的方法。在皮质被膜、海马、基底神经节、杏仁核、丘脑和几个中脑区域发现包括其树突在内的假定胆碱能感受神经元具有免疫反应性。在新皮质中,与M35的免疫沉淀物主要存在于第5层锥体细胞、一些第3层锥体细胞和第2层星形细胞中,所有这些细胞都包括其基底和顶端树突的特征性树突形态。在海马中,各种锥体细胞、颗粒细胞和非锥体细胞类型在海马的不同细胞层、齿状回门和海马角的海马下托中被染色。此外,在中央和外侧杏仁核、基底神经节的所有部分和腹侧苍白球中出现了阳性反应细胞。丘脑的几个核中有大量标记神经元,特别是在腹外侧核、前腹侧核和膝状核中数量众多。在皮质和海马中也出现了一些星形胶质细胞的染色。在所有情况下,对M35免疫反应性细胞内分布的电镜研究表明,在与高尔基体紧密相关的胞体细胞质中有密集沉淀物,但在内质网附近明显没有。免疫沉淀物可以沿着微管运输系统在树突内追踪到近端和远端突触后膜位置,与未标记的突触前末梢相对。将通过比较M35分布与胆碱能神经支配模式、毒蕈碱受体配体结合研究以及毒蕈碱受体亚型mRNA的定位来讨论M35对毒蕈碱受体亚型的识别。

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