Institute of Genetics, University of Cologne, 50674 Cologne, Germany;
Genes Dev. 2014 Jan 15;28(2):167-81. doi: 10.1101/gad.230953.113. Epub 2014 Jan 8.
The transcription factors of the Snail family are key regulators of epithelial-mesenchymal transitions, cell morphogenesis, and tumor metastasis. Since its discovery in Drosophila ∼25 years ago, Snail has been extensively studied for its role as a transcriptional repressor. Here we demonstrate that Drosophila Snail can positively modulate transcriptional activation. By combining information on in vivo occupancy with expression profiling of hand-selected, staged snail mutant embryos, we identified 106 genes that are potentially directly regulated by Snail during mesoderm development. In addition to the expected Snail-repressed genes, almost 50% of Snail targets showed an unanticipated activation. The majority of "Snail-activated" genes have enhancer elements cobound by Twist and are expressed in the mesoderm at the stages of Snail occupancy. Snail can potentiate Twist-mediated enhancer activation in vitro and is essential for enhancer activity in vivo. Using a machine learning approach, we show that differentially enriched motifs are sufficient to predict Snail's regulatory response. In silico mutagenesis revealed a likely causative motif, which we demonstrate is essential for enhancer activation. Taken together, these data indicate that Snail can potentiate enhancer activation by collaborating with different activators, providing a new mechanism by which Snail regulates development.
Snail 家族的转录因子是上皮-间充质转化、细胞形态发生和肿瘤转移的关键调节因子。自 25 年前在果蝇中发现以来,Snail 因其作为转录抑制因子的作用而被广泛研究。在这里,我们证明果蝇 Snail 可以正向调节转录激活。通过将体内占位信息与精选的、分阶段的 snail 突变体胚胎的表达谱相结合,我们鉴定了 106 个在中胚层发育过程中可能被 Snail 直接调控的基因。除了预期的 Snail 抑制基因外,近 50%的 Snail 靶基因显示出意想不到的激活。大多数“Snail 激活”基因具有 Twist 共结合的增强子元件,并在 Snail 占位的阶段在中胚层中表达。Snail 可以在体外增强 Twist 介导的增强子激活,并且在体内增强子活性中是必需的。使用机器学习方法,我们表明差异富集的基序足以预测 Snail 的调控反应。计算机诱变显示了一个可能的致病基序,我们证明它对增强子激活是必需的。总之,这些数据表明 Snail 可以通过与不同的激活剂合作来增强增强子激活,为 Snail 调节发育提供了一种新的机制。