Vincent Ben J, Estrada Javier, DePace Angela H
Department of Systems Biology, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.
Integr Biol (Camb). 2016 Apr 18;8(4):475-84. doi: 10.1039/c5ib00321k. Epub 2016 Mar 3.
Genetic approaches have been instrumental in dissecting developmental enhancers by characterizing their transcription factor binding sites. Though some enhancers have been well-studied in this regard, we cannot currently build developmental enhancers from scratch. Reconstitution experiments can provide important complementary tests of our understanding of enhancer function, but these experiments are exceedingly rare in the literature, possibly due to the difficulty of publishing negative results. In this perspective, we argue that the time is right for a synthetic approach to enhancer biology. Focusing primarily on Drosophila enhancers as examples, we review classic and modern methods for dissecting enhancer function as well as computational tools for enhancer design. We include our own negative results from attempts to reconstitute the stripe 2 enhancer from the even-skipped locus and discuss possible ways forward. We believe that with a communal effort in open data sharing, we can make substantial progress toward a complete understanding of enhancer function.
遗传方法通过表征转录因子结合位点,在剖析发育增强子方面发挥了重要作用。尽管在这方面一些增强子已得到充分研究,但目前我们还无法从头构建发育增强子。重组实验可为我们对增强子功能的理解提供重要的补充测试,但这些实验在文献中极为罕见,可能是由于发表阴性结果存在困难。从这个角度来看,我们认为现在是采用合成方法研究增强子生物学的时候了。我们主要以果蝇增强子为例,回顾剖析增强子功能的经典和现代方法以及增强子设计的计算工具。我们纳入了自己尝试从偶数跳动基因座重建条纹2增强子的阴性结果,并讨论了可能的前进方向。我们相信,通过在开放数据共享方面的共同努力,我们能够在全面理解增强子功能方面取得实质性进展。