层粘连蛋白在三维基因组组织和全局基因表达中的作用。

Youngjo Kim, Xiaobin Zheng, Yixian Zheng
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引用次数: 25

摘要

核层蛋白b1基因组相互作用的全基因组图谱显示,基因贫乏和转录不活跃的基因组区域与核层相关。大量研究表明,核层的主要结构成分核层蛋白在整体染色质组织和基因表达中起着重要作用。然而,层粘连蛋白如何影响三维基因组的组织和核外周的转录仍不清楚。我们最近的研究表明,核层蛋白对核周围不同的层相关染色质结构域(LADs)进行差异调节,从而影响全球三维基因组组织和基因表达。在这篇额外的观点中,我们讨论了如何通过使用各种基因组学工具,揭示层粘胶蛋白在协调三维基因组组织和基因表达中的功能。缩写:3D:三维的;LAD:层相关染色质结构域;3C:染色体构象捕获;TAD:拓扑关联域;海岛:组蛋白和板层景观;NL:核层;mESC:小鼠胚胎干细胞;DNA腺嘌呤甲基转移酶鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Role of lamins in 3D genome organization and global gene expression.

Role of lamins in 3D genome organization and global gene expression.

Role of lamins in 3D genome organization and global gene expression.

Role of lamins in 3D genome organization and global gene expression.

Genome-wide mapping of lamin-B1-genome interactions has shown that gene-poor and transcriptionally inactive genomic regions are associated with the nuclear lamina. Numerous studies have suggested that lamins, the major structural components of the nuclear lamina, play a role in global chromatin organization and gene expression. How lamins could influence the 3D genome organization and transcription from the nuclear periphery has, however, remained unclear. Our recent studies showed that lamins differentially regulate distinct lamina-associated chromatin domains (LADs) at the nuclear periphery, which can in turn influence global 3D genome organization and gene expression. In this Extra View, we discuss how by using various genomics tools, it has become possible to reveal the functions of lamins in orchestrating 3D genome organization and gene expression. Abbreviations: 3D: three dimensional; LAD: lamina-associated chromatin domain; 3C: Chromosome Conformation Capture; TAD: topologically associated domain; HiLands: Histone and lamina landscape; NL: nuclear lamina; mESC: mouse embryonic stem cell; DamID: DNA adenine methyltransferase identification.

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