首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Learning-related Postburst Afterhyperpolarization Reduction In Ca1 Pyramidal Neurons Is Mediated By Protein Kinase A
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Learning-related Postburst Afterhyperpolarization Reduction In Ca1 Pyramidal Neurons Is Mediated By Protein Kinase A

机译:Ca1锥体神经元的学习相关的突发后超极化减少是由蛋白激酶A介导的。

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Learning-related reductions of the postburst afterhyperpolarization (AHP) in hippocampal pyramidal neurons have been shown ex vivo, after trace eyeblink conditioning. The AHP is also reduced by many neuromodulators, such as norepinephrine, via activation of protein kinases. Trace eyeblink conditioning, like other hippocampus-dependent tasks, relies on protein synthesis for consolidating the learned memory. Protein kinase A (PKA) has been shown to be a key contributor for protein synthesis via the cAMP-response element-binding pathway. Here, we have explored a potential involvement of PKA and protein kinase C (PKC) in maintaining the learning-related postburst AHP reduction observed in CA1 pyramidal neurons. Bath application of isoproterenol (1 μM), a β-ad-renergic agonist that activates PKA, significantly reduced the AHP in CA1 neurons from control animals, but not from rats that learned. This occlusion suggests that PKA activity is involved in maintaining the AHP reduction measured ex vivo after successful learning. In contrast, bath application of the PKC activator, (-) indolactam V (0.2 μM), significantly reduced the AHP in CA1 neurons from both control and trained rats, indicating that PKC activity is not involved in maintaining the AHP reduction at this point after learning.
机译:痕量眨眼调节后,离体显示海马锥体神经元爆发后超极化(AHP)的学习相关减少。许多神经调节剂(例如去甲肾上腺素)也可以通过激活蛋白激酶来降低AHP。像其他海马依赖任务一样,微量眨眼调节也依赖于蛋白质合成来巩固学习记忆。已证明蛋白激酶A(PKA)是通过cAMP响应元件结合途径进行蛋白合成的关键因素。在这里,我们已经探索了PKA和蛋白激酶C(PKC)在维持在CA1锥体神经元中观察到的与学习相关的爆发后AHP降低的潜在参与。沐浴中使用的异丙肾上腺素(1μM)是一种激活PKA的β-肾上腺素能激动剂,可显着降低对照组动物而非学习过的大鼠CA1神经元的AHP。这种闭塞提示,成功学习后,离体测得的AHP降低与维持PKA活性有关。相比之下,洗澡时应用PKC激活剂(-)吲哚内酰胺V(0.2μM)会显着降低对照和训练大鼠的CA1神经元中的AHP,这表明PKC活性在此后不参与维持AHP降低学习。

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