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A Barrier-Only Boundary Element Delimits the Formation of Facultative Heterochromatin in Drosophila melanogaster and Vertebrates

机译:仅障碍的边界元素限制了果蝇和脊椎动物中兼性异染色质的形成。

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摘要

Formation of facultative heterochromatin at specific genomic loci is fundamentally important in defining cellular properties such as differentiation potential and responsiveness to developmental, physiological, and environmental stimuli. By the nature of their formation, heterochromatin and repressive histone marks propagate until the chain reaction is broken. While certain active promoters can block propagation of heterochromatin, there are also specialized DNA elements, referred to as chromatin barriers, that serve to demarcate the boundary of facultative heterochromatin formation. In this study, we identified a chromatin barrier that specifically limits the formation of repressive chromatin to a distal enhancer region so that repressive histone modifications cannot reach the promoter and promoter-proximal enhancer regions of reaper. Unlike all of the known boundary elements identified for Drosophila melanogaster, this IRER (irradiation-responsive enhancer region) left barrier (ILB) does not exhibit enhancer-blocking activity. Not only has the ILB been conserved in different Drosophila species, it can also function as an effective chromatin barrier in vertebrate cells. This suggests that the mechanism by which it functions to spatially restrict the formation of repressive chromatin marked by trimethylated H3K27 has also been conserved widely during evolution.
机译:在特定的基因组位点上,兼性异染色质的形成对于定义细胞特性(例如分化潜能以及对发育,生理和环境刺激的反应能力)至关重要。通过其形成的性质,异染色质和阻抑组蛋白标记会传播,直到链反应破裂为止。尽管某些活性启动子可以阻止异染色质的繁殖,但也存在专门的DNA元素(称为染色质屏障),用于划定兼性异染色质形成的边界。在这项研究中,我们确定了染色质屏障,该屏障特别限制了抑制性染色质形成至远端增强子区域,从而使抑制性组蛋白修饰无法到达收割者的启动子和启动子附近增强子区域。与果蝇所鉴定的所有已知边界元素不同,此IRER(辐射响应性增强子区域)左屏障(ILB)不显示增强子阻断活性。 ILB不仅在不同的果蝇物种中得到了保守,而且还可以在脊椎动物细胞中充当有效的染色质屏障。这表明其在空间上限制由三甲基化的H3K27标记的阻抑染色质形成的机制在进化过程中也得到了广泛的保存。

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