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通过定量放射自显影法对大鼠脑中L-谷氨酸受体进行定位

Localization of L-glutamate receptors in rat brain by quantitative autoradiography.

作者信息

Halpain S, Wieczorek C M, Rainbow T C

出版信息

J Neurosci. 1984 Sep;4(9):2247-58. doi: 10.1523/JNEUROSCI.04-09-02247.1984.

DOI:10.1523/JNEUROSCI.04-09-02247.1984
PMID:6090612
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6564798/
Abstract

In vitro autoradiography was used to characterize and quantitatively map the sodium-independent binding of [3H]glutamate in rat brain. Measured in the presence of chloride, glutamate binding to frozen brain sections was specific, saturable, and reversible, with a Kd in the low micromolar range. At least two distinct binding sites were detected which had different affinities for quisqualic acid (0.7 microM and 1.2 mM). Autoradiograms revealed very high levels of binding in rostral forebrain areas, especially olfactory structures and frontal cortex. High levels of binding were found in sensory cortex, certain hippocampal subfields, caudate, lateral septum, and other limbic structures. Lowest levels were seen in globus pallidus, preoptic area, brainstem reticular formation, and spinal trigeminal nucleus. All other regions, including midbrain, thalamus, hypothalamus, and cerebellar cortex exhibited moderate levels of [3H]glutamate binding. Within the hippocampus glutamate binding was greatest in the inner two-thirds of the dentate molecular layer, subiculum, and CA1 stratum radiatum. CA3 was much less densely labeled; CA2 and CA4 were intermediate. Unlike cell layers in the cerebellum, hippocampal pyramidal and granule cell layers appeared mostly devoid of binding. The relationship of these binding sites to putative glutamate receptor subclasses and glutamatergic pathways is discussed.

摘要

采用体外放射自显影技术对大鼠脑中[3H]谷氨酸的非钠依赖性结合进行表征和定量定位。在存在氯离子的情况下进行测量,谷氨酸与冷冻脑切片的结合具有特异性、可饱和性和可逆性,解离常数(Kd)处于低微摩尔范围内。检测到至少两个不同的结合位点,它们对quisqualic酸的亲和力不同(分别为0.7微摩尔和1.2毫摩尔)。放射自显影片显示,在吻侧前脑区域,尤其是嗅觉结构和额叶皮质,结合水平非常高。在感觉皮质、某些海马亚区、尾状核、外侧隔区和其他边缘结构中发现了高水平的结合。在苍白球、视前区、脑干网状结构和三叉神经脊束核中结合水平最低。所有其他区域,包括中脑、丘脑、下丘脑和小脑皮质,均表现出中等水平的[3H]谷氨酸结合。在海马体中,谷氨酸结合在齿状分子层内侧三分之二、海马下托和CA1辐射层中最为显著。CA3的标记密度要低得多;CA2和CA4处于中间水平。与小脑的细胞层不同,海马的锥体细胞层和颗粒细胞层大多没有结合。本文讨论了这些结合位点与假定的谷氨酸受体亚类和谷氨酸能通路之间的关系。