Kuhn Emily J, Viering Michaela M, Rhodes Katherine M, Geyer Pamela K
Molecular Biology Program and Department of Biochemistry, University of Iowa, College of Medicine, Iowa City 52242, USA.
EMBO J. 2003 May 15;22(10):2463-71. doi: 10.1093/emboj/cdg241.
Insulators are a class of elements that define independent domains of gene function. The Drosophila gypsy insulator is proposed to establish regulatory isolation by forming loop domains that constrain interactions between transcriptional control elements. This supposition is based upon the observation that insertion of a single gypsy insulator between an enhancer and promoter blocks enhancer function, while insertion of two gypsy insulators promotes enhancer bypass and activation of transcription. To investigate this model, we determined whether non-gypsy insulators interacted with each other and with the gypsy insulator. Pairs of scs or scs' insulators blocked enhancer function. Further, an intervening scs insulator did not block gypsy insulator interactions. Taken together, these data suggest that not all Drosophila insulators interact, with this property restricted to some insulators, such as gypsy. Three gypsy insulators inserted between an enhancer and promoter blocked enhancer function, indicating that gypsy insulator interactions may be restricted to pairs. Our studies imply that formation of loop domains may represent one of many mechanisms used by insulators to impart regulatory isolation.
绝缘子是一类能够定义基因功能独立结构域的元件。果蝇的gypsy绝缘子被认为是通过形成环状结构域来建立调控隔离,从而限制转录控制元件之间的相互作用。这一假设基于以下观察结果:在增强子和启动子之间插入单个gypsy绝缘子会阻断增强子功能,而插入两个gypsy绝缘子则会促进增强子旁路并激活转录。为了研究这一模型,我们确定了非gypsy绝缘子之间以及它们与gypsy绝缘子之间是否相互作用。scs或scs'绝缘子对会阻断增强子功能。此外,中间插入的scs绝缘子不会阻断gypsy绝缘子的相互作用。综合这些数据表明,并非所有果蝇绝缘子都会相互作用,这种特性仅限于某些绝缘子,如gypsy。在增强子和启动子之间插入三个gypsy绝缘子会阻断增强子功能,这表明gypsy绝缘子的相互作用可能仅限于成对出现。我们的研究表明,环状结构域的形成可能是绝缘子实现调控隔离的众多机制之一。