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增强子协同作用可在大基因组距离上补偿活性丧失。

Enhancer cooperativity can compensate for loss of activity over large genomic distances.

作者信息

Thomas Henry F, Feng Songjie, Haslhofer Felix, Huber Marie, García Gallardo María, Loubiere Vincent, Vanina Daria, Pitasi Mattia, Stark Alexander, Buecker Christa

机构信息

Max Perutz Laboratories, Vienna BioCenter Campus (VBC), Dr.-Bohr-Gasse 9, 1030 Vienna, Austria; University of Vienna, Center for Molecular Biology, Department of Microbiology, Immunobiology, and Genetics, Dr.-Bohr-Gasse 9, 1030 Vienna, Austria; Vienna BioCenter PhD Program, a Doctoral School of the University of Vienna and the Medical University of Vienna, 1030 Vienna, Austria.

Max Perutz Laboratories, Vienna BioCenter Campus (VBC), Dr.-Bohr-Gasse 9, 1030 Vienna, Austria; University of Vienna, Center for Molecular Biology, Department of Microbiology, Immunobiology, and Genetics, Dr.-Bohr-Gasse 9, 1030 Vienna, Austria; Vienna BioCenter PhD Program, a Doctoral School of the University of Vienna and the Medical University of Vienna, 1030 Vienna, Austria.

出版信息

Mol Cell. 2025 Jan 16;85(2):362-375.e9. doi: 10.1016/j.molcel.2024.11.008. Epub 2024 Dec 2.

Abstract

Enhancers are short DNA sequences that activate their target promoter from a distance; however, increasing the genomic distance between the enhancer and the promoter decreases expression levels. Many genes are controlled by combinations of multiple enhancers, yet the interaction and cooperation of individual enhancer elements are not well understood. Here, we developed a synthetic platform in mouse embryonic stem cells that allows building complex regulatory landscapes from the bottom up. We tested the system by integrating individual enhancers at different distances and confirmed that the strength of an enhancer contributes to how strongly it is affected by increased genomic distance. Furthermore, synergy between two enhancer elements depends on the distance at which the two elements are integrated: introducing a weak enhancer between a strong enhancer and the promoter strongly increases reporter gene expression, allowing enhancers to activate from increased genomic distances.

摘要

增强子是短的DNA序列,可从远距离激活其靶启动子;然而,增加增强子与启动子之间的基因组距离会降低表达水平。许多基因受多个增强子组合的调控,但单个增强子元件之间的相互作用与协同作用尚未得到充分了解。在此,我们在小鼠胚胎干细胞中开发了一个合成平台,该平台能够自下而上构建复杂的调控格局。我们通过在不同距离整合单个增强子来测试该系统,并证实增强子的强度决定了其受基因组距离增加影响的程度。此外,两个增强子元件之间的协同作用取决于这两个元件整合的距离:在强增强子与启动子之间引入一个弱增强子会强烈增加报告基因的表达,使增强子能够从增加的基因组距离处激活。

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