Fujioka Miki, Wu Xian, Jaynes James B
Department of Biochemistry and Molecular Biology and the Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Development. 2009 Sep;136(18):3077-87. doi: 10.1242/dev.036467. Epub 2009 Aug 12.
Insulator sequences help to organize the genome into discrete functional regions by preventing inappropriate cross-regulation. This is thought to be mediated in part through associations with other insulators located elsewhere in the genome. Enhancers that normally drive Drosophila even skipped (eve) expression are located closer to the TER94 transcription start site than to that of eve. We discovered that the region between these genes has enhancer-blocking activity, and that this insulator region also mediates homing of P-element transgenes to the eve-TER94 genomic neighborhood. Localization of these activities to within 0.6 kb failed to separate them. Importantly, homed transgenic promoters respond to endogenous eve enhancers from great distances, and this long-range communication depends on the homing/insulator region, which we call Homie. We also find that the eve promoter contributes to long-distance communication. However, even the basal hsp70 promoter can communicate with eve enhancers across distances of several megabases, when the communication is mediated by Homie. These studies show that, while Homie blocks enhancer-promoter communication at short range, it facilitates long-range communication between distant genomic regions, possibly by organizing a large chromosomal loop between endogenous and transgenic Homies.
绝缘子序列通过防止不适当的交叉调控,有助于将基因组组织成离散的功能区域。这被认为部分是通过与基因组中其他位置的绝缘子相互作用来介导的。通常驱动果蝇偶数跳动(eve)表达的增强子,距离TER94转录起始位点比距离eve的转录起始位点更近。我们发现这两个基因之间的区域具有增强子阻断活性,并且这个绝缘子区域还介导P因子转基因归巢到eve - TER94基因组邻域。将这些活性定位到0.6 kb范围内未能将它们分开。重要的是,归巢的转基因启动子能在远距离响应内源性eve增强子,并且这种远程通讯依赖于我们称为Homie的归巢/绝缘子区域。我们还发现eve启动子有助于远程通讯。然而,当通讯由Homie介导时,即使是基础的hsp70启动子也能与跨越数百万碱基距离的eve增强子进行通讯。这些研究表明,虽然Homie在短距离内阻断增强子 - 启动子通讯,但它促进了远距离基因组区域之间的远程通讯,可能是通过在内源性和转基因Homie之间组织一个大的染色体环来实现的。