Kwon Deborah, Mucci Diane, Langlais Kristofor K, Americo Jeffrey L, DeVido Sarah K, Cheng Yuzhong, Kassis Judith A
Laboratory of Molecular Genetics, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892, USA.
Development. 2009 Sep;136(18):3067-75. doi: 10.1242/dev.036426. Epub 2009 Aug 12.
Enhancers are often located many tens of kilobases away from the promoter they regulate, sometimes residing closer to the promoter of a neighboring gene. How do they know which gene to activate? We have used homing P[en] constructs to study the enhancer-promoter communication at the engrailed locus. Here we show that engrailed enhancers can act over large distances, even skipping over other transcription units, choosing the engrailed promoter over those of neighboring genes. This specificity is achieved in at least three ways. First, early acting engrailed stripe enhancers exhibit promoter specificity. Second, a proximal promoter-tethering element is required for the action of the imaginal disc enhancer(s). Our data suggest that there are two partially redundant promoter-tethering elements. Third, the long-distance action of engrailed enhancers requires a combination of the engrailed promoter and sequences within or closely linked to the promoter proximal Polycomb-group response elements. These data show that multiple mechanisms ensure proper enhancer-promoter communication at the Drosophila engrailed locus.
增强子通常位于它们所调控的启动子数十千碱基之外,有时距离相邻基因的启动子更近。它们如何知道要激活哪个基因呢?我们利用归巢P[en]构建体来研究果蝇成对控制基因位点处的增强子 - 启动子通讯。在此我们表明,成对控制基因增强子能够在远距离起作用,甚至跳过其他转录单元,选择成对控制基因启动子而非相邻基因的启动子。这种特异性至少通过三种方式实现。第一,早期起作用的成对控制基因条带增强子表现出启动子特异性。第二,成虫盘增强子的作用需要一个近端启动子拴系元件。我们的数据表明存在两个部分冗余的启动子拴系元件。第三,成对控制基因增强子的远距离作用需要成对控制基因启动子与启动子近端多梳蛋白组反应元件内或与之紧密相连的序列相结合。这些数据表明多种机制确保了果蝇成对控制基因位点处增强子 - 启动子的正确通讯。