TGF- β Signaling Cooperates with AT Motif-Binding Factor-1 for Repression of the α -Fetoprotein Promoter.

Journal of signal transduction Pub Date : 2014-01-01 Epub Date: 2014-07-03 DOI:10.1155/2014/970346
Nobuo Sakata, Satoshi Kaneko, Souichi Ikeno, Yutaka Miura, Hidekazu Nakabayashi, Xue-Yuan Dong, Jin-Tang Dong, Taiki Tamaoki, Naoko Nakano, Susumu Itoh
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引用次数: 8

Abstract

α-Fetoprotein (AFP) is known to be highly produced in fetal liver despite its barely detectable level in normal adult liver. On the other hand, hepatocellular carcinoma often shows high expression of AFP. Thus, AFP seems to be an oncogenic marker. In our present study, we investigated how TGF-β signaling cooperates with AT motif-binding factor-1 (ATBF1) to inhibit AFP transcription. Indeed, the expression of AFP mRNA in HuH-7 cells was negatively regulated by TGF-β signaling. To further understand how TGF-β suppresses the transcription of the AFP gene, we analyzed the activity of the AFP promoter in the presence of TGF-β. We found that the TGF-β signaling and ATBF1 suppressed AFP transcription through two ATBF1 binding elements (AT-motifs). Using a heterologous reporter system, both AT-motifs were required for transcriptional repression upon TGF-β stimulation. Furthermore, Smads were found to interact with ATBF1 at both its N-terminal and C-terminal regions. Since the N-terminal (ATBF1N) and C-terminal regions of ATBF1 (ATBF1C) lack the ability of DNA binding, both truncated mutants rescued the cooperative inhibitory action by the TGF-β signaling and ATBF1 in a dose-dependent manner. Taken together, these findings indicate that TGF-β signaling can act in concert with ATBF1 to suppress the activity of the AFP promoter through direct interaction of ATBF1 with Smads.

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TGF- β信号与AT基序结合因子-1协同抑制α -胎蛋白启动子
已知α-胎蛋白(AFP)在胎儿肝脏中大量产生,尽管其在正常成人肝脏中几乎检测不到。另一方面,肝细胞癌常表现为AFP的高表达。因此,AFP似乎是一种致癌标志物。在本研究中,我们研究了TGF-β信号如何与AT基序结合因子-1 (ATBF1)协同抑制AFP转录。在hh -7细胞中,AFP mRNA的表达确实受到TGF-β信号的负调控。为了进一步了解TGF-β如何抑制AFP基因的转录,我们分析了TGF-β存在时AFP启动子的活性。我们发现TGF-β信号和ATBF1通过两个ATBF1结合元件(at -motif)抑制AFP转录。使用异源报告系统,这两个at基序都是TGF-β刺激的转录抑制所必需的。此外,Smads被发现在其n端和c端区域与ATBF1相互作用。由于ATBF1的n端(ATBF1N)和c端(ATBF1C)缺乏DNA结合能力,两个截短的突变体都以剂量依赖的方式恢复了TGF-β信号和ATBF1的协同抑制作用。综上所述,这些发现表明TGF-β信号可以通过ATBF1与Smads的直接相互作用,协同ATBF1抑制AFP启动子的活性。
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