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氧化应激介导海马神经元中bcl-2启动子的下调。

Oxidative stress-mediated down-regulation of bcl-2 promoter in hippocampal neurons.

作者信息

Pugazhenthi Subbiah, Nesterova Albina, Jambal Purevsuren, Audesirk Gerald, Kern Marcey, Cabell Leigh, Eves Eva, Rosner Marsha R, Boxer Linda M, Reusch Jane E-B

机构信息

The Department of Medicine, University of Colorado Health Sciences Center, Denver, CO 80220, USA.

出版信息

J Neurochem. 2003 Mar;84(5):982-96. doi: 10.1046/j.1471-4159.2003.01606.x.

Abstract

Generation of oxidative stress/reactive oxygen species (ROS) is one of the causes of neuronal apoptosis. We have examined the effects of ROS at the transcriptional level in an immortalized hippocampal neuronal cell line (H19-7) and in rat primary hippocampal neurons. Treatment of H19-7 cells with hydrogen peroxide (150 micro m) resulted in a 40% decrease in Bcl-2 protein and a parallel decrease in bcl-2 mRNA levels. H19-7 cells overexpressing bcl-2 were found to be resistant to ROS-induced apoptosis. We had previously shown that bcl-2 promoter activity is positively regulated by the transcription factor cyclic AMP response element binding protein (CREB) in neurons. In the present study, we demonstrate that ROS decreases the activity of luciferase reporter gene driven by a cyclic AMP response element site containing bcl-2 promoter. Exposure of neurons to ROS for 6 h resulted in basal and fibroblast growth factor-2-stimulated phosphorylation/activation of CREB. Chronic 24 h treatment with ROS led to a significant (p < 0.01) decrease in CREB protein and CREB mRNA levels. Adenoviral overexpression of wild type CREB in H19-7 cells resulted in significant (p < 0.01) protection against ROS-induced apoptosis through up-regulation of Bcl-2 expression whereas dominant negative CREB exaggerated the injury. These findings demonstrate that loss of CREB function contributes to oxidative stress-induced neuronal dysfunction.

摘要

氧化应激/活性氧(ROS)的产生是神经元凋亡的原因之一。我们已经在永生化海马神经元细胞系(H19-7)和大鼠原代海马神经元中研究了ROS在转录水平的作用。用过氧化氢(150微摩尔)处理H19-7细胞导致Bcl-2蛋白减少40%,且bcl-2 mRNA水平平行下降。发现过表达bcl-2的H19-7细胞对ROS诱导的凋亡具有抗性。我们之前已经表明,在神经元中,转录因子环磷酸腺苷反应元件结合蛋白(CREB)对bcl-2启动子活性具有正向调节作用。在本研究中,我们证明ROS降低了由包含bcl-2启动子的环磷酸腺苷反应元件位点驱动的荧光素酶报告基因的活性。将神经元暴露于ROS 6小时导致基础状态下和成纤维细胞生长因子-2刺激下的CREB磷酸化/激活。用ROS进行24小时的慢性处理导致CREB蛋白和CREB mRNA水平显著(p<0.01)下降。在H19-7细胞中腺病毒过表达野生型CREB通过上调Bcl-2表达对ROS诱导的凋亡产生显著(p<0.01)保护作用,而显性负性CREB则加剧了损伤。这些发现表明,CREB功能丧失导致氧化应激诱导的神经元功能障碍。

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