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Genomic meta-analysis of the interplay between 3D chromatin organization and gene expression programs under basal and stress conditions

机译:在基础和应激条件下3D染色质组织与基因表达程序之间相互作用的基因组荟萃分析

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摘要

BackgroundOur appreciation of the critical role of the genome’s 3D organization in gene regulation is steadily increasing. Recent 3C-based deep sequencing techniques elucidated a hierarchy of structures that underlie the spatial organization of the genome in the nucleus. At the top of this hierarchical organization are chromosomal territories and the megabase-scale A/B compartments that correlate with transcriptional activity within cells. Below them are the relatively cell-type-invariant topologically associated domains (TADs), characterized by high frequency of physical contacts between loci within the same TAD, and are assumed to function as regulatory units. Within TADs, chromatin loops bring enhancers and target promoters to close spatial proximity. Yet, we still have only rudimentary understanding how differences in chromatin organization between different cell types affect cell-type-specific gene expression programs that are executed under basal and challenged conditions.
机译:背景我们对基因组3D组织在基因调控中的关键作用的认识正在稳步提高。最近基于3C的深度测序技术阐明了构成核基因组空间组织基础的结构层次。在此层次结构的顶部,是染色体区域和与细胞内转录活性相关的兆碱基级A / B区室。在它们之下是相对细胞类型不变的拓扑相关域(TAD),其特征是同一TAD中基因座之间的物理接触频率很高,并被认为起调节单元的作用。在TAD内,染色质环使增强子和靶标启动子在空间上接近。然而,我们仍然只有基本的了解,即不同细胞类型之间染色质组织的差异如何影响在基础条件和挑战条件下执行的细胞类型特异性基因表达程序。

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