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在哺乳动物冬眠动物早期蛰伏期间,FoxO3a介导应激反应基因的激活。

FoxO3a-mediated activation of stress responsive genes during early torpor in a mammalian hibernator.

作者信息

Wu Cheng-Wei, Storey Kenneth B

机构信息

Department of Biology, Institute of Biochemistry, Carleton University, 1125 Colonel By Drive, Ottawa, ON, K1S 5B6, Canada.

出版信息

Mol Cell Biochem. 2014 May;390(1-2):185-95. doi: 10.1007/s11010-014-1969-7. Epub 2014 Feb 4.

Abstract

The torpor-arousal cycle of mammalian hibernation is characterized by drastic changes in physiological state that are supported by reprogramming of metabolic functions. The entrance and arousal phases of the cycle function as transitional stages, where major changes in oxygen metabolism take place. Acute changes in oxygen delivery can lead to either ischemia-related injuries during torpor induction or reperfusion damage during arousal. This study examines the regulation of the forkhead box O3 (FoxO3) transcription factor, which functions to increase cellular cytoprotection in response to oxidative stress stimuli. Immunoblots show that total expression of FoxO3a was elevated during early torpor (ET) and late torpor by 3.6- and 4.5-fold, respectively, compared to euthermic control. However, enhanced phosphorylation of FoxO3a at Thr-32 was only evident during ET by 1.5-fold, accompanied by increased phosphorylation of c-Jun N-terminal kinases by 1.2-fold. During ET, increased nuclear inclusion of FoxO3a was evident along with its transcriptional co-activator β-catenin by 1.9- and 2.7-fold, respectively. As well, FoxO3a DNA binding was elevated by 1.8-fold during ET, along with increased expression of FoxO3a downstream genes catalase, p27, and cyclin G 2 , by 1.4-, 1.6-, and 1.3-fold, respectively. Overall, the results indicate activation of FoxO3a during ET, suggesting a role of FoxO3a in response to cellular stress during hibernation.

摘要

哺乳动物冬眠的蛰伏-觉醒周期的特点是生理状态发生剧烈变化,这是由代谢功能的重新编程所支持的。该周期的进入和觉醒阶段起着过渡阶段的作用,在此期间氧代谢会发生重大变化。氧输送的急性变化可能导致蛰伏诱导期间的缺血相关损伤或觉醒期间的再灌注损伤。本研究考察了叉头框O3(FoxO3)转录因子的调控作用,该转录因子的功能是在氧化应激刺激下增强细胞的细胞保护作用。免疫印迹显示,与正常体温对照组相比,FoxO3a的总表达在早期蛰伏(ET)和晚期蛰伏期间分别升高了3.6倍和4.5倍。然而,仅在ET期间,Thr-32位点的FoxO3a磷酸化增强明显,升高了1.5倍,同时c-Jun氨基末端激酶的磷酸化增加了1.2倍。在ET期间,FoxO3a的核内包含增加明显,同时其转录共激活因子β-连环蛋白分别增加了1.9倍和2.7倍。同样,在ET期间,FoxO3a的DNA结合增加了1.8倍,同时FoxO3a下游基因过氧化氢酶、p27和细胞周期蛋白G2的表达分别增加了1.4倍、1.6倍和1.3倍。总体而言,结果表明在ET期间FoxO3a被激活,提示FoxO3a在冬眠期间应对细胞应激中发挥作用。

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