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CREB activation mediates plasticity in cultured hippocampal neurons.

机译:CREB激活介导培养的海马神经元的可塑性。

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Activation of cyclic AMP dependent kinase is believed to mediate slow onset, long-term potentiation (LTP) in central neurons. Cyclic-AMP activates a cascade of molecular events leading to phosphorylation of the nuclear cAMP responsive element binding protein (pCREB). Whereas a variety of stimuli lead to activation of CREB, the molecular processes downstream of CREB, which may be relevant to neuronal plasticity, are yet largely unknown. We have recently found that following exposure to estradiol, pCREB mediates the large increase in dendritic spine density in cultured rat hippocampal neurons. We now extend these observations to include other stimuli, such as bicuculline, that cause the formation of new dendritic spines. Such stimuli share with estradiol the same mechanism of action in that both require activity-dependent CREB phosphorylation. Our observations suggest that CREB phosphorylation is a necessary, but perhaps not sufficient, step in the process leading to the generation of new dendritic spines and perhaps to functional plasticity as well.
机译:据信环状AMP依赖性激酶的活化介导中枢神经元的缓慢发作,长期增强(LTP)。 Cyclic-AMP激活一系列分子事件,从而导致核cAMP响应元件结合蛋白(pCREB)磷酸化。尽管多种刺激导致CREB激活,但CREB下游的与神经元可塑性有关的分子过程仍是未知的。我们最近发现,暴露于雌二醇后,pCREB介导了培养的大鼠海马神经元中树突棘密度的大幅增加。现在,我们将这些观察结果扩展到包括其他刺激物,例如双小分子伞菌,它们会导致新的树突棘的形成。这样的刺激与雌二醇共享相同的作用机制,因为两者均需要依赖活性的CREB磷酸化。我们的观察结果表明,CREB磷酸化是导致新的树突棘生成以及功能可塑性的过程中的必要步骤,但可能还不够。

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