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首页> 外文期刊>The FEBS journal >Regulation of ERK1/2 phosphorylation by acute and chronic morphine - implications for the role of cAMP-responsive element binding factor (CREB)-dependent and Ets-like protein-1 (Elk-1)-dependent transcription; small interfering RNA-based strategy.
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Regulation of ERK1/2 phosphorylation by acute and chronic morphine - implications for the role of cAMP-responsive element binding factor (CREB)-dependent and Ets-like protein-1 (Elk-1)-dependent transcription; small interfering RNA-based strategy.

机译:急性和慢性吗啡对ERK1 / 2磷酸化的调节-对cAMP响应元件结合因子(CREB)依赖性和Ets样蛋白1(Elk-1)依赖性转录的作用的暗示;基于RNA的小干扰策略。

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摘要

Extracellular signal-regulated kinases (ERKs) have been shown to be activated by opioids and functionally linked to addiction. Morphine-associated changes in ERK activity seem to be the characteristic features of opioid action. In this study, we observed a rapid and severe increase in ERK1/2 activity after a 5 min morphine treatment of HEK-MOR cells (transfected with the rat mu-opioid receptor MOR1) expressing mu-opioid receptor. Cellular adaptations to chronic (72 h) morphine treatment were manifested by a slight and sustained increase in ERK1/2 activity. Withdrawal caused by an opioid receptor antagonist - naloxone - attenuated phosphorylation of ERK1/2. Little information is available on the precise mechanism of ERK activity regulation. Using RNA interference technology, we generated stably transfected cells with silenced expression of cAMP-responsive element binding factor (CREB) and Ets-like protein-1 (Elk-1) transcription factors, which are known targets for activated ERK1/2. In these cells, ERK1/2 activity regulation was altered. Silencing of CREB or Elk-1 significantly increased ERK activation observed after 5 min of morphine stimulation. The initial level of activated ERKs in these cells was also augmented. Moreover, the cellular response to withdrawal signals and chronic opioid treatment was diminished. These differences suggest that both CREB-dependent and Elk-1-dependent transcription contribute to the expression of proteins regulating morphine-induced ERK activity (particular phosphatases, upstream kinases or their activatory proteins).
机译:细胞外信号调节激酶(ERK)已被阿片类药物激活,并与成瘾功能相关。吗啡相关的ERK活性变化似乎是阿片类药物作用的特征。在这项研究中,我们观察了吗啡5分钟的吗啡处理表达mu阿片受体的HEK-MOR细胞(转染大鼠mu阿片受体MOR1)后,ERK1 / 2活性迅速而严重增加。 ERK1 / 2活性持续轻微升高,表明细胞对慢性吗啡治疗(72小时)适应。阿片受体拮抗剂纳洛酮引起的戒断导致ERK1 / 2磷酸化减弱。关于ERK活动调节的精确机制的信息很少。使用RNA干扰技术,我们生成了稳定转染的细胞,其中cAMP响应元件结合因子(CREB)和Ets样蛋白1(Elk-1)转录因子的表达沉默,这是活化ERK1 / 2的已知靶标。在这些细胞中,ERK1 / 2活性调节被改变。吗啡刺激5分钟后,CREB或Elk-1沉默显着增加了ERK激活。这些细胞中活化的ERK的初始水平也增加了。此外,细胞对戒断信号和慢性阿片类药物治疗的反应减弱。这些差异表明,CREB依赖性和Elk-1依赖性转录均参与调节吗啡诱导的ERK活性的蛋白质(特定的磷酸酶,上游激酶或其活化蛋白)的表达。

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