首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >-)Epicatechin stimulates ERK-dependent cyclic AMP response element activity and up-regulates GluR2 in cortical neurons.
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-)Epicatechin stimulates ERK-dependent cyclic AMP response element activity and up-regulates GluR2 in cortical neurons.

机译:-)表儿茶素刺激皮质神经元中ERK依赖的环AMP响应元件的活性并上调GluR2。

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摘要

Emerging evidence suggests that the cellular actions of flavonoids relate not simply to their antioxidant potential but also to the modulation of protein kinase signalling pathways. We investigated in primary cortical neurons, the ability of the flavan-3-ol, (-)epicatechin, and its human metabolites at physiologically relevant concentrations, to stimulate phosphorylation of the transcription factor cAMP-response element binding protein (CREB), a regulator of neuronal viability and synaptic plasticity. (-)Epicatechin at 100-300 nmol/L stimulated a rapid, extracellular signal-regulated kinase (ERK)- and PI3K-dependent, increase in CREB phosphorylation. At micromolar concentrations, stimulation was no longer apparent and at the highest concentration tested (30 mumol/L) (-)epicatechin was inhibitory. (-)Epicatechin also stimulated ERK and Akt phosphorylation with similar bell-shaped concentration-response characteristics. The human metabolite 3'-O-methyl-(-)epicatechin was as effective as (-)epicatechin atstimulating ERK phosphorylation, but (-)epicatechin glucuronide was inactive. (-)Epicatechin and 3'-O-methyl-(-)epicatechin treatments (100 nmol/L) increased CRE-luciferase activity in cortical neurons in a partially ERK-dependent manner, suggesting the potential to increase CREB-mediated gene expression. mRNA levels of the glutamate receptor subunit GluR2 increased by 60%, measured 18 h after a 15 min exposure to (-)epicatechin and this translated into an increase in GluR2 protein. Thus, (-)epicatechin has the potential to increase CREB-regulated gene expression and increase GluR2 levels and thus modulate neurotransmission, plasticity and synaptogenesis.
机译:新兴证据表明,类黄酮的细胞作用不仅与其抗氧化能力有关,而且与蛋白激酶信号通路的调节有关。我们在初级皮质神经元中研究了在生理相关浓度下的flavan-3-ol,(-)表儿茶素及其人类代谢物刺激转录因子cAMP反应元件结合蛋白(CREB)磷酸化的能力神经元活力和突触可塑性(-)100-300 nmol / L的依匹替茶素刺激了快速的细胞外信号调节激酶(ERK)和PI3K依赖性的CREB磷酸化增加。在微摩尔浓度下,刺激不再明显,在最高测试浓度(30摩尔/升)下,(-)表儿茶素具有抑制作用。 (-)表儿茶素还可以刺激ERK和Akt磷酸化,具有类似钟形的浓度响应特征。人代谢产物3'-O-甲基-(-)表儿茶素与(-)表儿茶素刺激ERK磷酸化一样有效,但(-)表儿茶素葡糖醛酸没有活性。 (-)表儿茶素和3'-O-甲基-(-)表儿茶素治疗(100 nmol / L)以部分ERK依赖的方式增加了皮质神经元中CRE荧光素酶的活性,表明可能增加CREB介导的基因表达。谷氨酸受体亚基GluR2的mRNA水平在(-)表儿茶素暴露15分钟后18小时测得增加了60%,这转化为GluR2蛋白的增加。因此,(-)表儿茶素有可能增加CREB调节的基因表达并增加GluR2水平,从而调节神经传递,可塑性和突触形成。

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