首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Inhibition of acetylcholine-induced activation of extracellular regulated protein kinase prevents the encoding of an inhibitory avoidance response in the rat.
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Inhibition of acetylcholine-induced activation of extracellular regulated protein kinase prevents the encoding of an inhibitory avoidance response in the rat.

机译:乙酰胆碱诱导的细胞外调节蛋白激酶激活的抑制作用阻止了大鼠中规避回避反应的编码。

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摘要

It has been demonstrated that the forebrain cholinergic system and the extracellular regulated kinase signal transduction pathway are involved in the mechanisms of learning, encoding, and storage of information. We investigated the involvement of the cholinergic and glutamatergic systems projecting to the medial prefrontal cortex and ventral hippocampus and of the extracellular regulated kinase signal transduction pathway in the acquisition and recall of the step-down inhibitory avoidance response in the rat, a relatively simple behavioral test acquired in a one-trial session. To this aim we studied by microdialysis the release of acetylcholine and glutamate, and by immunohistochemistry the activation of extracellular regulated kinase during acquisition, encoding and recall of the behavior. Cholinergic, but not glutamatergic, neurons projecting to the medial prefrontal cortex and ventral hippocampus were activated during acquisition of the task, as shown by increase in cortical and hippocampal acetylcholine release. Released acetylcholine in turn activated extracellular regulated kinase in neurons located in the target structures, since the muscarinic receptor antagonist scopolamine blocked extracellular regulated kinase activation. Both increased acetylcholine release and extracellular regulated kinase activation were necessary for memory formation, as administration of scopolamine and of extracellular regulated kinase inhibitors was followed by blockade of extracellular regulated kinase activation and amnesia. Our data indicate that a critical function of the learning-associated increase in acetylcholine release is to promote the activation of the extracellular regulated kinase signal transduction pathway and help understanding the role of these systems in the encoding of an inhibitory avoidance memory.
机译:已证明前脑胆碱能系统和细胞外调节激酶信号转导途径参与信息的学习,编码和存储机制。我们调查了投射到内侧前额叶皮层和腹侧海马的胆碱能和谷氨酸能系统以及细胞外调节激酶信号转导途径在大鼠降压回避反应的获得和记忆中的参与,这是一个相对简单的行为测试在一次审判中获得。为此,我们通过微透析研究了乙酰胆碱和谷氨酸的释放,并通过免疫组织化学研究了行为的获取,编码和记忆期间细胞外调节激酶的激活。采集任务期间,激活了投射到内侧前额叶皮层和腹侧海马的胆碱能而不是谷氨酸能的神经元,如皮质和海马乙酰胆碱释放的增加所示。释放的乙酰胆碱依次激活位于靶结构中的神经元中的细胞外调节激酶,因为毒蕈碱受体拮抗剂东pol碱阻断了细胞外调节激酶的活化。乙酰胆碱释放的增加和细胞外调节激酶的激活对于形成记忆都是必需的,因为东碱和细胞外调节激酶抑制剂的给药随后会阻断细胞外调节激酶的激活和健忘症。我们的数据表明,乙酰胆碱释放与学习相关的增加的关键功能是促进细胞外调节激酶信号转导途径的激活,并帮助理解这些系统在抑制性回避记忆的编码中的作用。

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