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转录激活因子2(ATF2)的组成型活性突变体对基因转录的调控

Regulation of gene transcription by a constitutively active mutant of activating transcription factor 2 (ATF2).

作者信息

Steinmüller Lars, Thiel Gerald

机构信息

Department of Medical Biochemistry and Molecular Biology, University of Saarland Medical Center, D-66421 Homburg, Germany.

出版信息

Biol Chem. 2003 Apr;384(4):667-72. doi: 10.1515/BC.2003.074.

Abstract

Activating transcription factor 2 (ATF2) belongs to the family of basic region leucine zipper (bZIP) proteins that are characterized by the presence of a basic domain that functions as the DNA-binding domain and a leucine zipper domain that is required for dimerization. Together with bZIP proteins of the Fos and Jun families, ATF2 constitutes the AP-1 transcription factor complex. The biological activity of ATF2 is controlled by phosphorylation of two threonine residues within the N-terminal activation domain. Unphosphorylated ATF2 is trancriptionally silent, excluding simple overexpression studies to identify transcriptional targets of ATF2. We therefore decided to construct a constitutively active ATF2 mutant that would allow us to uncouple the investigation of transcriptional targets and biological functions of ATF2 from the variety of signaling pathways that lead to an activation of ATF2. We exchanged the phosphorylation-dependent activation domain of ATF2 with the constitutively active transcriptional activation domain of the transcription factor CREB2. In transient transfection experiments, this constitutively active ATF2 mutant stimulated c-jun, tumor necrosis factor alpha, and Fas ligand promoter activities. The transcriptional activity of the constitutively active ATF2 mutant could be impaired by dominant-negative forms of ATF2 or c-Jun, indicating that ATF2 and c-Jun utilize a similar dimerization code. In contrast, a dominant-negative CREB2 mutant did not impair ATF2-mediated transcriptional activation, suggesting that CREB2 exhibits a different dimerization specificity than ATF2 or c-Jun.

摘要

激活转录因子2(ATF2)属于碱性区域亮氨酸拉链(bZIP)蛋白家族,其特征在于存在作为DNA结合结构域起作用的碱性结构域和二聚化所需的亮氨酸拉链结构域。与Fos和Jun家族的bZIP蛋白一起,ATF2构成AP-1转录因子复合物。ATF2的生物学活性受N端激活结构域内两个苏氨酸残基磷酸化的控制。未磷酸化的ATF2在转录上是沉默的,这排除了通过简单过表达研究来鉴定ATF2转录靶标的可能性。因此,我们决定构建一种组成型活性ATF2突变体,这将使我们能够将对ATF2转录靶标和生物学功能的研究与导致ATF2激活的各种信号通路分开。我们将ATF2的磷酸化依赖性激活结构域与转录因子CREB2的组成型活性转录激活结构域进行了交换。在瞬时转染实验中,这种组成型活性ATF2突变体刺激了c-jun、肿瘤坏死因子α和Fas配体启动子活性。组成型活性ATF2突变体的转录活性可能会被ATF2或c-Jun的显性负性形式所削弱,这表明ATF2和c-Jun利用了相似的二聚化密码。相比之下,显性负性CREB2突变体不会损害ATF2介导的转录激活,这表明CREB2表现出与ATF2或c-Jun不同的二聚化特异性。

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