Spatial Organization of Epigenomes.

Current molecular biology reports Pub Date : 2016-03-01 Epub Date: 2016-02-04 DOI:10.1007/s40610-016-0028-4
Jonathan Christopher Dubé, Xue Qing David Wang, Josée Dostie
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Abstract

The role of genome architecture in transcription regulation has become the focus of an increasing number of studies over the past decade. Chromatin organization can have a significant impact on gene expression by promoting or restricting the physical proximity between regulatory DNA elements. Given that any change in chromatin state has the potential to alter DNA folding and the proximity between control elements, the spatial organization of chromatin is inherently linked to its molecular composition. In this review, we explore how modulators of chromatin state and organization might keep gene expression in check. We discuss recent findings and present some of the less well-studied aspects of spatial genome organization such as chromatin dynamics and regulation by non-coding RNAs.

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表观基因组的空间组织。
在过去的十年中,基因组结构在转录调控中的作用已成为越来越多研究的焦点。染色质组织可以通过促进或限制调节DNA元件之间的物理接近性对基因表达产生重大影响。鉴于染色质状态的任何变化都有可能改变DNA折叠和控制元件之间的接近性,染色质的空间组织与其分子组成内在地联系在一起。在这篇综述中,我们探讨了染色质状态和组织的调节剂如何控制基因表达。我们讨论了最近的发现,并提出了一些研究较少的空间基因组组织方面,如染色质动力学和非编码rna的调控。
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