Iwasaki Kenta, Hailemariam Kiros, Tsuji Yoshiaki
Department of Environmental and Molecular Toxicology, North Carolina State University, Raleigh, North Carolina 27695, USA.
J Biol Chem. 2007 Aug 3;282(31):22335-43. doi: 10.1074/jbc.M701477200. Epub 2007 Jun 12.
Gene transcription is coordinately regulated by the balance between activation and repression mechanisms in response to various external stimuli. Ferritin, composed of H and L subunits, is the major intracellular iron storage protein involved in iron homeostasis. We previously identified an enhancer, termed antioxidant-responsive element (ARE), in the human ferritin H gene and its respective transcriptional activators including Nrf2 and JunD. Here we found that ATF1 (activating transcription factor 1) is a transcriptional repressor of the ferritin H ARE. Subsequent yeast two-hybrid screening identified PIAS3 (protein inhibitor of activated STAT3) as an ATF1-binding protein. Further investigation of the human ferritin H ARE regulation showed that 1) PIAS3 reversed ATF1-mediated repression of the ferritin H ARE; 2) ATF1 was sumoylated, but PIAS3, a SUMO E3 ligase, did not appear to play a major role in SUMO1-mediated ATF1 sumoylation or ATF1 transcription activating function; 3) PIAS3 decreased ATF1 binding to the ARE; and 4) ATF1 knockdown with siRNA increased ferritin H expression, whereas PIAS3 knockdown decreased basal expression and oxidative stress-mediated induction of ferritin H. These results suggest that PIAS3 antagonizes the repressor function of ATF1, at least in part by blocking its DNA binding, and ultimately activates the ARE. Collectively our results suggest that PIAS3 is a new regulator of ATF1 that regulates the ARE-mediated transcription of the ferritin H gene.
基因转录通过激活和抑制机制之间的平衡来协调调节,以响应各种外部刺激。铁蛋白由H和L亚基组成,是参与铁稳态的主要细胞内铁储存蛋白。我们之前在人铁蛋白H基因中鉴定出一种增强子,称为抗氧化反应元件(ARE),以及其各自的转录激活因子,包括Nrf2和JunD。在这里,我们发现激活转录因子1(ATF1)是铁蛋白H基因ARE的转录抑制因子。随后的酵母双杂交筛选鉴定出PIAS3(激活的STAT3的蛋白抑制剂)为ATF1结合蛋白。对人铁蛋白H基因ARE调控的进一步研究表明:1)PIAS3逆转了ATF1介导的铁蛋白H基因ARE的抑制作用;2)ATF1被SUMO化,但PIAS3作为一种SUMO E3连接酶,似乎在SUMO1介导的ATF1 SUMO化或ATF1转录激活功能中不起主要作用;3)PIAS3减少了ATF1与ARE的结合;4)用小干扰RNA敲低ATF1可增加铁蛋白H的表达,而敲低PIAS3则降低铁蛋白H的基础表达以及氧化应激介导的铁蛋白H的诱导表达。这些结果表明,PIAS3至少部分地通过阻断ATF1与DNA的结合来拮抗其抑制功能,并最终激活ARE。我们的研究结果共同表明,PIAS3是ATF1的一种新调节因子,可调节铁蛋白H基因的ARE介导的转录。