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在氧化应激期间,JunD通过抗氧化反应元件激活人类铁蛋白H基因的转录。

JunD activates transcription of the human ferritin H gene through an antioxidant response element during oxidative stress.

作者信息

Tsuji Yoshiaki

机构信息

Department of Environmental and Molecular Toxicology, North Carolina State University, Campus Box 7633, Raleigh, NC 27695, USA.

出版信息

Oncogene. 2005 Nov 17;24(51):7567-78. doi: 10.1038/sj.onc.1208901.

Abstract

Ferritin is the major intracellular iron storage protein that sequesters excess free iron to minimize generation of iron-catalysed reactive oxygen species. We previously demonstrated that expression of ferritin heavy chain (ferritin H) was induced by pro-oxidants, which is a part of cellular antioxidant response to protect cells from oxidative damage. In this study, we have identified that the antioxidant/electrophile response element (ARE) located 4.5 kb upstream to the human ferritin H transcription initiation site is responsible for the oxidant response. The human ferritin H ARE comprises two copies of bidirectional AP1 motifs. Mutations in each AP1 motif significantly impaired protein binding and the function of the ARE, indicating that both of the AP1 motifs are required for pro-oxidant-mediated activation of the ferritin H gene. We identified that JunD, an AP1 family basic-leucine zipper (bZip) transcription factor, is one of the ferritin H ARE binding proteins and activates ferritin H transcription in HepG2 hepatocarcinoma cells. Gel retardation assay demonstrated that H2O2 (hydrogen peroxide) or t-BHQ (tert-butylhydroquinone) treatment increased total protein binding as well as JunD binding to the ferritin H ARE. Chromatin immunoprecipitation assay showed that H2O2 treatment induced JunD binding to the ferritin H ARE. Both H2O2 and t-BHQ induced phosphorylation of JunD at Ser-100, an activated form of JunD. Furthermore, overexpression of JunD induced endogenous ferritin H protein synthesis. Since JunD has recently been demonstrated to protect cells from several stress stimuli including oxidative stress, these results suggest that, in addition to NFE2-related factor 2 (Nrf2) as a major ARE regulatory protein, JunD is another ARE regulatory protein for transcriptional activation of the human ferritin H gene and probably other antioxidant genes containing the conserved ARE sequences by which JunD may confer cytoprotection during oxidative stress.

摘要

铁蛋白是主要的细胞内铁储存蛋白,它螯合过量的游离铁,以尽量减少铁催化的活性氧的产生。我们之前证明,铁蛋白重链(铁蛋白H)的表达由促氧化剂诱导,这是细胞抗氧化反应的一部分,可保护细胞免受氧化损伤。在本研究中,我们确定位于人类铁蛋白H转录起始位点上游4.5 kb处的抗氧化/亲电反应元件(ARE)负责氧化应激反应。人类铁蛋白H的ARE由两个双向AP1基序拷贝组成。每个AP1基序中的突变均显著损害蛋白质结合和ARE的功能,表明两个AP1基序都是促氧化剂介导的铁蛋白H基因激活所必需的。我们确定JunD,一种AP1家族碱性亮氨酸拉链(bZip)转录因子,是铁蛋白H的ARE结合蛋白之一,并在HepG2肝癌细胞中激活铁蛋白H转录。凝胶阻滞试验表明,过氧化氢(H2O2)或叔丁基对苯二酚(t-BHQ)处理增加了总蛋白结合以及JunD与铁蛋白H的ARE的结合。染色质免疫沉淀试验表明,H2O2处理诱导JunD与铁蛋白H的ARE结合。H2O2和t-BHQ均诱导JunD在Ser-100处磷酸化,这是JunD的一种活化形式。此外,JunD的过表达诱导内源性铁蛋白H蛋白合成。由于最近已证明JunD可保护细胞免受包括氧化应激在内的多种应激刺激,这些结果表明,除了作为主要ARE调节蛋白的NFE2相关因子2(Nrf2)之外,JunD是另一种用于人类铁蛋白H基因转录激活的ARE调节蛋白,并且可能是其他含有保守ARE序列的抗氧化基因的调节蛋白,通过这些基因,JunD可能在氧化应激期间赋予细胞保护作用。

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