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Pluripotency in 3D: genome organization in pluripotent cells

机译:3D多能性:多能细胞中的基因组组织

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摘要

Cells face the challenge of storing two meters of DNA in the three-dimensional (3D) space of the nucleus that spans only a few microns. The nuclear organization that is required to overcome this challenge must allow for the accessibility of the gene regulatory machinery to the DNA and, in the case of embryonic stem cells (ESCs), for the transcriptional and epigenetic changes that accompany differentiation. Recent technological advances have allowed for the mapping of genome organization at an unprecedented resolution and scale. These breakthroughs have led to a deluge of new data, and a sophisticated understanding of the relationship between gene regulation and 3D genome organization is beginning to form. In this review we summarize some of the recent findings illuminating the 3D structure of the eukaryotic genome, as well as the relationship between genome topology and function from the level of whole chromosomes to enhancer-promoter loops with a focus on features affecting genome organization in ESCs and changes in nuclear organization during differentiation.
机译:细胞面临着在只有几微米的原子核的三维(3D)空间中存储两米DNA的挑战。克服这一挑战所需的核组织必须允许基因调节机制接近DNA,并且在胚胎干细胞(ESC)的情况下,必须允许伴随分化的转录和表观遗传变化。最近的技术进步允许以前所未有的分辨率和规模绘制基因组组织图。这些突破导致大量的新数据,并且对基因调控和3D基因组组织之间的关系的复杂理解开始形成。在这篇综述中,我们总结了一些最近的发现,这些发现阐明了真核基因组的3D结构,以及从整个染色体的水平到增强子-启动子环的基因组拓扑与功能之间的关系,重点关注影响ESC中基因组组织的特征。分化过程中核组织的变化。

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