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Presynaptic inhibition of excitatory synaptic transmission mediated by alpha adrenergic receptors in area CA3 of the rat hippocampus in vitro

机译:突触前抑制大鼠海马CA3区α肾上腺素能受体介导的兴奋性突触传递

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摘要

We have investigated the action of norepinephrine (NE) on excitatory synaptic transmission in the hippocampus by recording from CA3 pyramidal cells in organotypic slice cultures. NE (5 microM) was found to decrease the amplitude of pharmacologically isolated EPSPs elicited with stimulation of mossy fibers or recurrent axon collaterals (mean decrease in EPSP amplitude, 44%). Desensitization was observed with repetitive applications. NE did not affect the sensitivity of CA3 cells to iontophoretically applied AMPA, and did not affect the amplitude distribution of TTX-resistant, miniature excitatory synaptic currents. These data suggest that NE acts at presynaptic receptors to decrease glutamate release. This action of NE was blocked by the alpha receptor antagonist phentolamine and the specific alpha 1 receptor antagonist prazosine, but not by the beta receptor antagonist timolol or the alpha 2 receptor antagonist idazoxan. Inhibition of EPSPs by NE was prevented by pretreatment of cultures with pertussis toxin, indicating that G- proteins couple these receptors to their effectors. Stimulation of protein kinase C with phorbol ester blocked the action of NE on EPSPs. This effect, as well as the desensitization of NE responses, was reduced by application of the protein kinase inhibitor staurosporin. Presynaptic inhibition of excitatory synaptic transmission, mediated by alpha adrenergic receptors, represents a novel modulatory action of NE in the hippocampus.
机译:我们通过从器官型切片培养物中的CA3锥体细胞记录下来,研究了去甲肾上腺素(NE)对海马兴奋性突触传递的作用。发现NE(5 microM)降低了生苔纤维或轴突旁支刺激引起的药理学分离的EPSP的幅度(平均EPSP幅度降低了44%)。重复应用观察到脱敏。 NE不会影响CA3细胞对离子电渗入AMPA的敏感性,也不会影响耐TTX的微型兴奋性突触电流的幅度分布。这些数据表明NE作用于突触前受体以减少谷氨酸的释放。 NE的这种作用被α受体拮抗剂苯妥拉明和特定的α1受体拮抗剂哌唑嗪阻断,但未被β受体拮抗剂替莫洛尔或α2受体拮抗剂咪唑烷阻断。用百日咳毒素预处理培养物可防止NE对EPSP的抑制作用,这表明G蛋白将这些受体与其效应子偶联。佛波酯刺激蛋白激酶C可以阻断NE对EPSP的作用。通过应用蛋白激酶抑制剂星形孢菌素减少了这种效应以及NE反应的脱敏。由α肾上腺素受体介导的兴奋性突触传递的突触前抑制代表海马中NE的新型调节作用。

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