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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Synaptic and extrasynaptic GABA-A and GABA-B receptors in the globus pallidus: an electron microscopic immunogold analysis in monkeys.
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Synaptic and extrasynaptic GABA-A and GABA-B receptors in the globus pallidus: an electron microscopic immunogold analysis in monkeys.

机译:苍白球中的突触和突触外GABA-A和GABA-B受体:猴子的电子显微镜免疫金分析。

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GABA-A and GABA-B receptors mediate differential effects in the CNS. To better understand the role of these receptors in regulating pallidal functions, we compared their subcellular and subsynaptic localization in the external and internal segments of the globus pallidus (GPe and GPi) in monkeys, using pre- and post-embedding immunocytochemistry with antibodies against GABA-A (alpha1, beta2/3 subunits) and GABA-BR1 receptor subtype. Our results demonstrate that GABA-A and GABA-B receptors display a differential pattern of subcellular and subsynaptic localization in both segments of the globus pallidus. The majority of GABA-BR1 immunolabeling is intracellular, whereas immunoreactivity for GABA-A receptor subunits is mostly bound to the plasma membrane. A significant proportion of both GABA-BR1 and GABA-A receptor immunolabeling is extrasynaptic, but GABA-A receptor subunits also aggregate in the main body of putative GABAergic symmetric synapses established by striatal- and pallidal-like terminals. GABA-BR1 immunoreactivity is expressed presynaptically in putative glutamatergic terminals, while GABA-A alpha1 and beta2/3 receptor subunits are exclusively post-synaptic and often coexist at individual symmetric synapses in both GPe and GPi. In conclusion, our findings corroborate the concept that ionotropic and metabotropic GABA receptors are located to subserve different effects in pallidal neurons. Although the aggregation of GABA-A receptors at symmetric synapses is consistent with their role in fast inhibitory synaptic transmission, the extrasynaptic distribution of both GABA-A and GABA-B receptors provides a substrate for complex modulatory functions that rely predominantly on the spillover of GABA.
机译:GABA-A和GABA-B受体介导中枢神经系统的差异作用。为了更好地了解这些受体在调节苍白球功能中的作用,我们使用了嵌入和免疫后的抗GABA抗体,比较了它们在猴苍白球的外部和内部部分(GPe和GPi)的亚细胞和突触下定位-A(alpha1,beta2 / 3亚基)和GABA-BR1受体亚型。我们的结果表明,GABA-A和GABA-B受体在苍白球的两个节段中都表现出亚细胞和突触下定位的差异模式。大多数GABA-BR1免疫标记是细胞内的,而针对GABA-A受体亚基的免疫反应性则主要与质膜结合。 GABA-BR1和GABA-A受体免疫标记的显着比例是突触外,但GABA-A受体亚基也聚集在由纹状体和苍白质样末端建立的假定的GABA能对称突触的主体中。 GABA-BR1免疫反应性在假定的谷氨酸能终末突触前表达,而GABA-A alpha1和β2/ 3受体亚基仅在突触后并通常共存于GPe和GPi的单个对称突触中。总之,我们的发现证实了离子型和代谢型GABA受体在苍白神经元中具有不同作用的概念。尽管GABA-A受体在对称突触中的聚集与其在快速抑制突触传递中的作用一致,但GABA-A和GABA-B受体的突触外分布为复杂的调节功能提供了基础,这些调节功能主要依赖于GABA的溢出。

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