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Association of m1 and m2 muscarinic receptor proteins with asymmetric synapses in the primate cerebral cortex: morphological evidence for cholinergic modulation of excitatory neurotransmission.

机译:m1和m2毒蕈碱受体蛋白与灵长类动物大脑皮层中的不对称突触的关联:兴奋性神经传递的胆碱能调节的形态学证据。

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摘要

Muscarinic m1 receptors traditionally are considered to be postsynaptic to cholinergic fibers, while m2 receptors are largely presynaptic receptors associated with axons. We have examined the distribution of these receptor proteins in the monkey cerebral cortex and obtained results that are at odds with this expectation. Using immunohistochemistry with specific antibodies to recombinant m1 and m2 muscarinic receptor proteins, we have demonstrated that both m1 and m2 receptors are prominently associated with noncholinergic asymmetric synapses as well as with the symmetric synapses that characterize the cholinergic pathways in the neocortex. At asymmetric synapses, both m1 and m2 receptor immunoreactivity is observed postsynaptically within spines and dendrites; the m2 receptor is also found in presynaptic axon terminals which, in the visual cortex, resemble the parvicellular geniculocortical pathway. In addition, m2 labeling was also found in a subset of nonpyramidal neurons. These findings establish that the m2 receptor is located postsynaptically as well as presynaptically. The association of m1 and m2 receptors with asymmetric synapses in central pathways, which use excitatory amino acids as neurotransmitters, provides a morphological basis for cholinergic modulation of excitatory neurotransmission.
机译:传统上,毒蕈碱型m1受体被认为与胆碱能纤维突触后,而m2受体在很大程度上是与轴突相关的突触前受体。我们已经检查了这些受体蛋白在猴大脑皮层中的分布,并获得了与这一预期不一致的结果。使用针对重组m1和m2毒蕈碱受体蛋白的特异性抗体的免疫组织化学方法,我们已经证明m1和m2受体均与非胆碱能不对称突触以及与表征新皮层胆碱能途径的对称突触显着相关。在不对称突触中,在棘突和树突中突触后均观察到m1和m2受体的免疫反应。 m2受体也存在于突触前轴突末端,在视觉皮层中类似于小细胞的成皮细胞通路。此外,在非锥体神经元的子集中也发现了m2标记。这些发现确定了m2受体位于突触后和突触前。 m1和m2受体与使用兴奋性氨基酸作为神经递质的中枢途径中的不对称突触的关联为兴奋性神经传递的胆碱能调节提供了形态学基础。

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