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The Role of RNA Polymerase II Contiguity and Long-Range Interactions in the Regulation of Gene Expression in Human Pluripotent Stem Cells

机译:RNA聚合酶II连续性和远距离相互作用在人类多能干细胞基因表达调控中的作用

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摘要

The eukaryotic nucleus is a highly complex structure that carries out multiple functions primarily needed for gene expression, and among them, transcription seems to be the most fundamental. Diverse approaches have demonstrated that transcription takes place at discrete sites known as transcription factories, wherein RNA polymerase II (RNAP II) is attached to the factory and immobilized while transcribing DNA. It has been proposed that transcription factories promote chromatin loop formation, creating long-range interactions in which relatively distant genes can be transcribed simultaneously. In this study, we examined long-range interactions between the POU5F1 gene and genes previously identified as being POU5F1 enhancer-interacting, namely, CDYL, TLE2, RARG, and MSX1 (all involved in transcriptional regulation), in human pluripotent stem cells (hPSCs) and their early differentiated counterparts. As a control gene, RUNX1 was used, which is expressed during hematopoietic differentiation and not associated with pluripotency. To reveal how these long-range interactions between POU5F1 and the selected genes change with the onset of differentiation and upon RNAP II inhibition, we performed three-dimensional fluorescence in situ hybridization (3D-FISH) followed by computational simulation analysis. Our analysis showed that the numbers of long-range interactions between specific genes decrease during differentiation, suggesting that the transcription of monitored genes is associated with pluripotency. In addition, we showed that upon inhibition of RNAP II, long-range associations do not disintegrate and remain constant. We also analyzed the distance distributions of these genes in the context of their positions in the nucleus and revealed that they tend to have similar patterns resembling normal distribution. Furthermore, we compared data created in vitro and in silico to assess the biological relevance of our results.
机译:真核是一个高度复杂的结构,可以执行基因表达所需的多种功能,其中转录似乎是最基本的。多种方法已经证明,转录发生在称为转录工厂的离散位点,其中RNA聚合酶II(RNAP II)连接到工厂并在转录DNA时被固定。已经提出,转录工厂促进染色质环的形成,产生长距离相互作用,其中相对较远的基因可以同时被转录。在这项研究中,我们检查了人多能干细胞(hPSC)中POU5F1基因与先前鉴定为POU5F1增强子相互作用的基因之间的远程相互作用,即CDYL,TLE2,RARG和MSX1(均参与转录调控)。 )及其早期分化的对应对象。作为对照基因,使用了RUNX1,其在造血分化过程中表达且与多能性无关。为了揭示POU5F1与选定基因之间的这些远程相互作用如何随着分化的开始以及在RNAP II抑制后发生变化,我们进行了三维荧光原位杂交(3D-FISH),然后进行了计算仿真分析。我们的分析表明,特定基因之间的远程相互作用的数量在分化过程中减少,这表明所监测基因的转录与多能性有关。另外,我们显示出在抑制RNAP II后,远距离关联不会分解并保持恒定。我们还分析了这些基因在细胞核中的位置的距离分布,并揭示了它们倾向于具有类似于正态分布的相似模式。此外,我们比较了体外和计算机模拟创建的数据,以评估结果的生物学相关性。

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