Bollig Frank, Perner Birgit, Besenbeck Birgit, Köthe Susanne, Ebert Christina, Taudien Stefan, Englert Christoph
Molecular Genetics Group, Leibniz Institute for Age Research-Fritz Lipmann Institute, Beutenbergstrasse 11, Jena, Germany.
Development. 2009 Sep;136(17):2883-92. doi: 10.1242/dev.031773.
The Wilms' tumor suppressor gene Wt1 encodes a zinc-finger transcription factor that plays an essential role in organ development, most notably of the kidney. Despite its importance for organogenesis, knowledge of the regulation of Wt1 expression is scarce. Here, we have used transgenesis in zebrafish harboring two wt1 genes, wt1a and wt1b, in order to define regulatory elements that drive wt1 expression in the kidney. Stable transgenic lines with approximately 30 kb of the upstream genomic regions of wt1a or wt1b almost exactly recapitulated endogenous expression of the wt1 paralogs. In the case of wt1b, we have identified an enhancer that is located in the far upstream region that is necessary and sufficient for reporter gene expression in the pronephric glomeruli. Regarding wt1a, we could also identify an enhancer that is located approximately 4 kb upstream of the transcriptional start site that is required for expression in the intermediate mesoderm. Interestingly, this intermediate mesoderm enhancer is highly conserved between fish and mammals, is bound by members of the retinoic acid receptor family of transcription factors in gel shift experiments and mediates responsiveness to retinoic acid both in vivo and in cell culture. To our knowledge, this is the first functional demonstration of defined regulatory elements controlling Wt1 expression in vivo. The identification of kidney-specific enhancer elements will help us to better understand the integration of extracellular signals into intracellular networks in nephrogenesis.
威尔姆斯瘤抑制基因Wt1编码一种锌指转录因子,该因子在器官发育尤其是肾脏发育中发挥着至关重要的作用。尽管其对器官发生很重要,但关于Wt1表达调控的知识却很匮乏。在此,我们利用斑马鱼进行转基因研究,斑马鱼含有两个wt1基因,即wt1a和wt1b,以确定驱动wt1在肾脏中表达的调控元件。携带wt1a或wt1b上游约30 kb基因组区域的稳定转基因品系几乎完全重现了wt1同源基因的内源性表达。就wt1b而言,我们鉴定出一个位于远上游区域的增强子,该增强子对于前肾肾小球中的报告基因表达是必需且充分的。关于wt1a,我们还鉴定出一个位于转录起始位点上游约4 kb处的增强子,该增强子是在中间中胚层表达所必需的。有趣的是,这个中间中胚层增强子在鱼类和哺乳动物之间高度保守,在凝胶迁移实验中被视黄酸受体转录因子家族的成员结合,并且在体内和细胞培养中都介导对视黄酸的反应。据我们所知,这是首次在体内功能性证明特定调控元件控制Wt1的表达。肾脏特异性增强子元件的鉴定将有助于我们更好地理解细胞外信号如何整合到肾发生过程中的细胞内网络中。