暴露于长时间冷应激的大鼠肾上腺髓质对新应激源转录变化的易感性增加

Xiaoping Liu , Richard Kvetnansky , Lidia Serova , Anne Sollas , Esther L. Sabban
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引用次数: 23

摘要

对压力的反应受到先前对相同或不同压力源的经验的影响。例如,将冷应激大鼠暴露于异型(新型)应激源,如固定化(IMO),会引发儿茶酚胺的过度释放,并增加肾上腺髓质酪氨酸羟化酶(TH)的基因表达,TH是限制儿茶酚胺生物合成酶的速率。为了研究其机制,我们在暴露于低温(4°C)长达28天的大鼠中检测了与IMO触发的TH转录调控有关的几种转录因子的诱导或磷酸化。c-fos水平在2-6 h后短暂升高,1-28 d后恢复到基础水平。Fra-2不受短期寒冷的影响,但在28天的持续寒冷中被诱导约2倍。相比之下,CREB磷酸化或Egr1诱导没有明显变化。预暴露28天的大鼠和未预暴露28天的大鼠均接受单次IMO长达2小时。在IMO 30分钟后,预暴露冷的大鼠的CREB磷酸化更大。低温预暴露大鼠的Egr1诱导量是低温预暴露大鼠的3倍,即使在IMO停止后3小时仍显著升高。两组暴露于IMO后Fra-2升高10 - 20倍,在IMO后3小时甚至更高。然而,在低温预暴露的动物中,IMO应激后Fra-2的磷酸化程度更高。结果表明,低温预暴露动物对新应激的敏感性表现为几种转录因子的过度反应。
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Increased susceptibility to transcriptional changes with novel stressor in adrenal medulla of rats exposed to prolonged cold stress

The response to stress is influenced by prior experience with the same or different stressor. For example, exposure of cold pre-stressed rats to heterotypic (novel) stressors, such as immobilization (IMO), triggers an exaggerated release of catecholamines and increase in gene expression for adrenomedullary tyrosine hydroxylase (TH), the rate limiting catecholamine biosynthetic enzyme. To study the mechanism, we examined induction or phosphorylation of several transcription factors, which are implicated in IMO-triggered regulation of TH transcription, in rats exposed to cold (4 °C) for up to 28 days and then subjected to IMO. Levels of c-fos increased transiently after 2–6 h and returned to basal levels after 1–28 days cold stress. Fra-2, was unaffected by short term cold, but was induced about 2-fold by 28 days continual cold. In contrast, there were no significant changes in CREB phosphorylation or Egr1 induction. Rats, with and without pre-exposure to 28 days cold, were subjected to single IMO for up to 2 h. Phosphorylation of CREB after 30 min IMO was greater in cold pre-exposed rats. Induction of Egr1 was three times higher in cold pre-exposed rats and remained significantly elevated even 3 h after cessation of IMO. Exposure to IMO triggered a 10–20-fold elevation in Fra-2 in both groups, which was even higher 3 h after the IMO. However, Fra-2 was more heavily phosphorylated following IMO stress in cold pre-exposed animals. The results reveal that sensitization to novel stress in cold pre-exposed animals is manifested by exaggerated response of several transcription factors.

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