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Developmentally regulated higher-order chromatin interactions orchestrate B cell fate commitment

机译:发育调控的高级染色质相互作用协调B细胞的命运

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摘要

Genome organization in 3D nuclear-space is important for regulation of gene expression. However, the alterations of chromatin architecture that impinge on the B cell-fate choice of multi-potent progenitors are still unclear. By integrating in situ Hi-C analyses with epigenetic landscapes and genome-wide expression profiles, we tracked the changes in genome architecture as the cells transit from a progenitor to a committed state. We identified the genomic loci that undergo developmental switch between A and B compartments during B-cell fate determination. Furthermore, although, topologically associating domains (TADs) are stable, a significant number of TADs display structural alterations that are associated with changes in cis-regulatory interaction landscape. Finally, we demonstrate the potential roles for Ebf1 and its downstream factor, Pax5, in chromatin reorganization and transcription regulation. Collectively, our studies provide a general paradigm of the dynamic relationship between chromatin reorganization and lineage-specific gene expression pattern that dictates cell-fate determination.
机译:3D核空间中的基因组组织对于调节基因表达非常重要。但是,尚不清楚影响多能祖细胞B细胞命运选择的染色质结构改变。通过将原位Hi-C分析与表观遗传学景观和全基因组范围内的表达谱相集成,我们追踪了当细胞从祖细胞转变为定型状态时基因组架构的变化。我们确定了在B细胞命运确定期间经历A和B隔室之间的发育转换的基因组位点。此外,尽管拓扑关联域(TAD)稳定,但大量TAD却显示出与顺式调控相互作用格局变化相关的结构改变。最后,我们证明了Ebf1及其下游因子Pax5在染色质重组和转录调控中的潜在作用。总的来说,我们的研究提供了染色质重组与谱系特异性基因表达模式之间动态关系的一般范式,该动力学关系决定了细胞命运的确定。

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