O'Shields Britton, McArthur Andrew G, Holowiecki Andrew, Kamper Martin, Tapley Jeffrey, Jenny Matthew J
Department of Biological Sciences, University of Alabama, Tuscaloosa, AL 35487, USA.
Andrew McArthur Consulting, Hamilton, Ontario L8S 3P6, Canada.
Biochim Biophys Acta. 2014 Sep;1843(9):1818-33. doi: 10.1016/j.bbamcr.2014.04.015. Epub 2014 Apr 18.
The metal responsive element-binding transcription factor-1 (MTF-1) responds to changes in cellular zinc levels caused by zinc exposure or disruption of endogenous zinc homeostasis by heavy metals or oxygen-related stress. Here we report the functional characterization of a complete zebrafish MTF-1 in comparison with the previously identified isoform lacking the highly conserved cysteine-rich motif (Cys-X-Cys-Cys-X-Cys) found in all other vertebrate MTF-1 orthologs. In an effort to develop novel molecular tools, a constitutively nuclear dominant-negative MTF-1 (dnMTF-1) was generated as tool for inhibiting endogenous MTF-1 signaling. The in vivo efficacy of the dnMTF-1 was determined by microinjecting in vitro transcribed dnMTF-1 mRNA into zebrafish embryos (1-2 cell stage) followed by transcriptomic profiling using an Agilent 4x44K array on 28- and 36-hpf embryos. A total of 594 and 560 probes were identified as differentially expressed at 28hpf and 36hpf, respectively, with interesting overlaps between timepoints. The main categories of genes affected by the inhibition of MTF-1 signaling were: nuclear receptors and genes involved in stress signaling, neurogenesis, muscle development and contraction, eye development, and metal homeostasis, including novel observations in iron and heme homeostasis. Finally, we investigate both the transcriptional activator and transcriptional repressor role of MTF-1 in potential novel target genes identified by transcriptomic profiling during early zebrafish development.
金属反应元件结合转录因子1(MTF-1)可对因锌暴露、重金属或氧相关应激导致的内源性锌稳态破坏所引起的细胞锌水平变化做出反应。在此,我们报告了完整斑马鱼MTF-1的功能特征,并将其与先前鉴定的缺乏在所有其他脊椎动物MTF-1直系同源物中发现的高度保守的富含半胱氨酸基序(Cys-X-Cys-Cys-X-Cys)的同种型进行比较。为了开发新的分子工具,构建了一种组成型核显性负性MTF-1(dnMTF-1)作为抑制内源性MTF-1信号传导的工具。通过将体外转录的dnMTF-1 mRNA显微注射到斑马鱼胚胎(1-2细胞期)中,然后在28和36 hpf胚胎上使用安捷伦4x44K阵列进行转录组分析,来确定dnMTF-1在体内的功效。分别在28 hpf和36 hpf时,共鉴定出594个和560个差异表达的探针,各时间点之间存在有趣的重叠。受MTF-1信号抑制影响的主要基因类别包括:核受体以及参与应激信号传导、神经发生、肌肉发育与收缩、眼睛发育和金属稳态的基因,包括在铁和血红素稳态方面的新发现。最后,我们研究了MTF-1在斑马鱼早期发育过程中通过转录组分析鉴定出的潜在新靶基因中的转录激活和转录抑制作用。