首页> 美国卫生研究院文献>The Journal of Neuroscience >Quantitative localization of AMPA/kainate and kainate glutamate receptor subunit immunoreactivity in neurochemically identified subpopulations of neurons in the prefrontal cortex of the macaque monkey
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Quantitative localization of AMPA/kainate and kainate glutamate receptor subunit immunoreactivity in neurochemically identified subpopulations of neurons in the prefrontal cortex of the macaque monkey

机译:猕猴前额叶皮层神经元的神经化学鉴定的神经化学亚群中AMPA /海藻酸盐和海藻酸盐谷氨酸受体亚基免疫反应性的定量定位

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摘要

Excitatory amino acid transmission has been proposed as the principal synaptic mechanism for distribution of information through corticocortical and thalamocortical pathways. The following study utilized a double labeling paradigm, using antibodies that recognize non-NMDA ionotropic glutamate receptor subunits and other neuronal markers, to further define, quantitatively, the subclasses of neurons that contain immunoreactivity for the AMPA/kainate and kainate receptor subunits in the monkey prefrontal cortex. Double labeling with an antibody that recognizes common epitopes in AMPA/kainate subunits GluR2 and GluR3 (GluR2/3) in combination with an antibody that recognizes the kainate receptor subunits GluR5, GluR6, and GluR7 (GluR5/6/7) demonstrated that immunoreactivity for these two receptor classes was highly colocalized in a great majority of the pyramidal neurons in this region but present in only a minority of neurochemically identified subclasses of GABAergic interneurons. Furthermore, GluR2/3 immunoreactivity had principally a somatic distribution whereas GluR5/6/7 labeling was predominately found in the perikarya and/or particular dendritic domains. In contrast, intense GluR1 labeling was observed in a small subpopulation of interneurons and low GluR1 immunoreactivity was present in many other cortical neurons. These results demonstrate that there is a high degree of specificity in the distribution of AMPA/kainate and kainate receptor-class proteins to subclasses of neurons within the neocortex. A neuron's combination of excitatory amino acid receptor subunits may regulate its response to excitatory inputs and further defines the role of identified subclasses of neurons in the complex circuitry of the cerebral cortex and may also indicate the basis for the apparent cellular selectivity of excitotoxic degenerative processes.
机译:已提出兴奋性氨基酸传递是通过皮质和丘脑途径分布信息的主要突触机制。以下研究利用双重标记范例,使用识别非NMDA离子型谷氨酸受体亚基和其他神经元标记的抗体,进一步定量地定义了猴子中对AMPA /海藻酸酯和海藻酸酯受体亚基具有免疫反应性的神经元亚类。前额叶皮层。与识别AMPA /红藻氨酸亚基GluR2和GluR3(GluR2 / 3)的通用表位的抗体一起进行双重标记,与识别红藻氨酸受体亚基GluR5,GluR6和GluR7(GluR5 / 6/7)的抗体结合使用,证明了针对这两个受体类别在该区域的绝大多数锥体神经元中高度共定位,但仅存在于少数经神经化学鉴定的GABA能中间神经元亚类中。此外,GluR2 / 3免疫反应性主要具有体细胞分布,而GluR5 / 6/7标记主要在周核和/或特定树突结构域中发现。相反,在小的中间神经元亚群中观察到强烈的GluR1标记,并且在许多其他皮层神经元中也存在低的GluR1免疫反应性。这些结果表明,AMPA /海藻酸盐和海藻酸盐受体类蛋白在新皮层内的神经元亚类中的分布具有高度的特异性。神经元的兴奋性氨基酸受体亚基的组合可以调节其对兴奋性输入的反应,并进一步定义已识别的神经元亚类在大脑皮层复杂回路中的作用,并且还可以为兴奋性毒性退化过程的表观细胞选择性奠定基础。

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