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AP-1对fra-1基因的转录激活作用由第一个内含子中的调控序列介导。

Transcriptional activation of the fra-1 gene by AP-1 is mediated by regulatory sequences in the first intron.

作者信息

Bergers G, Graninger P, Braselmann S, Wrighton C, Busslinger M

机构信息

Research Institute of Molecular Pathology, Vienna, Austria.

出版信息

Mol Cell Biol. 1995 Jul;15(7):3748-58. doi: 10.1128/MCB.15.7.3748.

Abstract

Constitutive expression of c-Fos, FosB, Fra-1, or c-Jun in rat fibroblasts leads to up-regulation of the immediate-early gene fra-1. Using the posttranslational FosER induction system, we demonstrate that this AP-1-dependent stimulation of fra-1 expression is rapid, depends on a functional DNA-binding domain of FosER, and is a general phenomenon observed in different cell types. In vitro mutagenesis and functional analysis of the rat fra-1 gene in stably transfected Rat-1A-FosER fibroblasts indicated that basal and AP-1-regulated expression of the fra-1 gene depends on regulatory sequences in the first intron which comprise a consensus AP-1 site and two AP-1-like elements. We have also investigated the transactivating and transforming properties of the Fra-1 protein to address the significance of fra-1 up-regulation. The entire Fra-1 protein fused to the DNA-binding domain of Ga14 is shown to lack any transactivation function, and yet it possesses oncogenic potential, as overexpression of Fra-1 in established rat fibroblasts results in anchorage-independent growth in vitro and tumor development in athymic mice, fra-1 is therefore not only induced by members of the Fos family, but its gene product may also contribute to cellular transformation by these proteins. Together, these data identify fra-1 as a unique member of the fos gene family which is under positive control by AP-1 activity.

摘要

在大鼠成纤维细胞中,c-Fos、FosB、Fra-1或c-Jun的组成型表达导致即刻早期基因fra-1的上调。利用翻译后FosER诱导系统,我们证明这种AP-1依赖的fra-1表达刺激是快速的,依赖于FosER的功能性DNA结合结构域,并且是在不同细胞类型中观察到的普遍现象。对稳定转染的Rat-1A-FosER成纤维细胞中大鼠fra-1基因进行体外诱变和功能分析表明,fra-1基因的基础表达和AP-1调节的表达依赖于第一个内含子中的调控序列,该序列包含一个共有AP-1位点和两个AP-1样元件。我们还研究了Fra-1蛋白的反式激活和转化特性,以探讨fra-1上调的意义。与Gal4的DNA结合结构域融合的完整Fra-1蛋白显示缺乏任何反式激活功能,但它具有致癌潜力,因为在已建立的大鼠成纤维细胞中过表达Fra-1会导致体外非贴壁生长和无胸腺小鼠肿瘤的发生。因此,fra-1不仅由Fos家族成员诱导,其基因产物也可能通过这些蛋白促进细胞转化。这些数据共同确定fra-1是fos基因家族的一个独特成员,受AP-1活性的正调控。

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本文引用的文献

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