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A possible role of Drosophila CTCF in mitotic bookmarking and maintaining chromatin domains during the cell cycle

机译:果蝇CTCF在细胞周期中在有丝分裂书签和维持染色质域中的可能作用。

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摘要

The CCCTC-binding factor (CTCF) is a highly conserved insulator protein that plays various roles in many cellular processes. CTCF is one of the main architecture proteins in higher eukaryotes, and in combination with other architecture proteins and regulators, also shapes the three-dimensional organization of a genome. Experiments show CTCF partially remains associated with chromatin during mitosis. However, the role of CTCF in the maintenance and propagation of genome architectures throughout the cell cycle remains elusive. We performed a comprehensive bioinformatics analysis on public datasets of Drosophila CTCF (dCTCF). We characterized dCTCF-binding sites according to their occupancy status during the cell cycle, and identified three classes: interphase-mitosis-common (IM), interphase-only (IO) and mitosis-only (MO) sites. Integrated function analysis showed dCTCF-binding sites of different classes might be involved in different biological processes, and IM sites were more conserved and more intensely bound. dCTCF-binding sites of the same class preferentially localized closer to each other, and were highly enriched at chromatin syntenic and topologically associating domains boundaries. Our results revealed different functions of dCTCF during the cell cycle and suggested that dCTCF might contribute to the establishment of the three-dimensional architecture of the Drosophila genome by maintaining local chromatin compartments throughout the whole cell cycle.
机译:CCCTC结合因子(CTCF)是高度保守的绝缘蛋白,在许多细胞过程中均发挥着多种作用。 CTCF是高级真核生物中的主要结构蛋白之一,并且与其他结构蛋白和调节剂结合使用,还可以塑造基因组的三维组织。实验表明,在有丝分裂过程中,CTCF部分仍与染色质相关。但是,CTCF在整个细胞周期中维持和传播基因组结构的作用仍然难以捉摸。我们对果蝇CTCF(dCTCF)的公共数据集进行了全面的生物信息学分析。我们根据dCTCF结合位点在细胞周期中的占用状态对其进行了表征,并确定了三类:相间有丝分裂常见(IM),仅相间(IO)和仅有丝分裂(MO)的位点。综合功能分析表明,不同类别的dCTCF结合位点可能参与了不同的生物过程,而IM位点则更保守且结合更紧密。相同类别的dCTCF结合位点优选彼此靠近定位,并在染色质同构和拓扑关联域边界处高度富集。我们的研究结果揭示了dCTCF在细胞周期中的不同功能,并暗示dCTCF通过在整个细胞周期中维持局部染色质区室,可能有助于果蝇基因组的三维结构的建立。

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