Lu Yu-Ju, Liu Ya-Chuan, Lin Meng-Chieh, Chen Yi-Ting, Lin Lih-Yuan
Institute of Molecular and Cellular Biology and Department of Life Science, National Tsing Hua University, Hsinchu, Taiwan.
Institute of Molecular and Cellular Biology and Department of Life Science, National Tsing Hua University, Hsinchu, Taiwan.
J Nutr Biochem. 2015 Apr;26(4):351-9. doi: 10.1016/j.jnutbio.2014.11.009. Epub 2014 Dec 30.
Zinc transporter 2 (ZnT2) is one of the cellular factors responsible for Zn homeostasis. Upon Zn overload, ZnT2 reduces cellular Zn by transporting it into excretory vesicles. We investigated the molecular mechanism that regulates human ZnT2 (hZnT2) gene expression. Zn induces hZnT2 expression in dose- and time-dependent manners. Overexpression of metal-responsive transcription factor 1 (MTF-1) increases hZnT2 transcription, whereas depletion of MTF-1 reduces hZnT2 expression. There are five putative metal response elements (MREs) within 1kb upstream of the hZnT2 gene. A serial deletion of the hZnT2 promoter region (from 5' to 3') shows that the two MREs proximal to the gene are essential for Zn-induced promoter activity. Further mutation analysis concludes that the penultimate MRE (MREb) supports the metal-induced promoter activity. The hZnT2 promoter has also a zinc finger E-box binding homeobox (ZEB) binding element. Mutation or deletion of this ZEB binding element elevates the basal and Zn-induced hZnT2 promoter activities. Knockdown of ZEB1 mRNA enhances the hZnT2 transcript level in HEK-293 cells. In MCF-7 (ZEB-deficient) cells, expression of ZEB proteins attenuates the Zn-induced hZnT2 expression. However, expressions of MTF-1 target genes such as human ZnT1 and metallothionein IIA were not affected. Our study shows the expression of the hZnT2 gene is coordinately regulated via active and suppressive modulators.
锌转运蛋白2(ZnT2)是负责锌稳态的细胞因子之一。在锌过载时,ZnT2通过将锌转运到排泄囊泡中来降低细胞内锌含量。我们研究了调节人类ZnT2(hZnT2)基因表达的分子机制。锌以剂量和时间依赖性方式诱导hZnT2表达。金属反应转录因子1(MTF-1)的过表达增加hZnT2转录,而MTF-1的缺失则降低hZnT2表达。hZnT2基因上游1kb内有五个假定的金属反应元件(MREs)。hZnT2启动子区域(从5'到3')的系列缺失表明,基因近端的两个MREs对锌诱导的启动子活性至关重要。进一步的突变分析得出结论,倒数第二个MRE(MREb)支持金属诱导的启动子活性。hZnT2启动子还有一个锌指E盒结合同源框(ZEB)结合元件。该ZEB结合元件的突变或缺失会提高基础和锌诱导的hZnT2启动子活性。敲低ZEB1 mRNA可提高HEK-293细胞中hZnT2转录水平。在MCF-7(ZEB缺陷)细胞中,ZEB蛋白的表达减弱了锌诱导的hZnT2表达。然而,MTF-1靶基因如人类ZnT1和金属硫蛋白IIA的表达不受影响。我们的研究表明,hZnT2基因的表达通过激活和抑制调节剂进行协调调节。