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首页> 外文期刊>Genome research >CTCF sites display cell cycle-dependent dynamics in factor binding and nucleosome positioning
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CTCF sites display cell cycle-dependent dynamics in factor binding and nucleosome positioning

机译:CTCF站点在因子结合和核心定位中显示细胞周期依赖性动态

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摘要

CCCTC-binding factor (CTCF) plays a key role in the formation of topologically associating domains (TADs) and loops in interphase. During mitosis TADs are absent, but how TAD formation is dynamically controlled during the cell cycle is not known. Several contradicting observations have been made regarding CTCF binding to mitotic chromatin using both genomics- and microscopy-based techniques. Here, we have used four different assays to address this debate. First, using 5C, we confirmed that TADs and CTCF loops are readily detected in interphase, but absent during prometaphase. Second, ATAC-seq analysis showed that CTCF sites display greatly reduced accessibility and lose the CTCF footprint in prometaphase, suggesting loss of CTCF binding and rearrangement of the nucleosomal array around the binding motif. In contrast, transcription start sites remain accessible in prometaphase, although adjacent nucleosomes can also become repositioned and occupy at least a subset of start sites during mitosis. Third, loss of site-specific CTCF binding was directly demonstrated using CUT&RUN. Histone modifications and histone variants are maintained in mitosis, suggesting a role in bookmarking of active CTCF sites. Finally, live-cell imaging, fluorescence recovery after photobleaching, and single molecule tracking showed that almost all CTCF chromatin binding is lost in prometaphase. Combined, our results demonstrate loss of CTCF binding to CTCF sites during prometaphase and rearrangement of the chromatin landscape around CTCF motifs. This, combined with loss of cohesin, would contribute to the observed loss of TADs and CTCF loops during mitosis and reveals that CTCF sites, key architectural cis-elements, display cell cycle stage-dependent dynamics in factor binding and nucleosome positioning.
机译:CCCTC绑定因子(CTCF)在形成拓扑相关域(TADS)和循环中的形成中扮演关键作用。在有丝分裂时,TAD不存在,但在细胞周期期间如何动态地控制TAD形成是如何知道的。使用基因组和显微镜技术的技术已经对有丝状染色质结合的CTCF结合的几个相互矛盾的观察。在这里,我们使用了四种不同的测定来解决这一辩论。首先,使用5C,我们证实了在临时临时期间易于检测到的TAD和CTCF环,但在PROMetaphase期间不存在。其次,ATAC-SEQ分析表明,CTCF位点显示出大大降低的可访问性并在PROMetaphase中丧失CTCF占用遗料,表明CTCF围绕结合基质周围的核体阵列的丧失损失和重排。相反,转录起始位点在普累染酶中仍然可以达到,尽管相邻的核体也可以重新定位并占据有丝分裂期间的起始位点的子集。第三,使用切割和运行直接证明了特异性CTCF结合的丧失。组蛋白修饰和组蛋白变体维持有丝分裂,表明在活性CTCF站点的书签中的作用。最后,活细胞成像,光漂白后的荧光回收,单分子跟踪显示,几乎所有CTCF染色质结合在PROMetaphase中丢失。结合,我们的结果表明,在Prometaphase期间,对CTCF位点的CTCF与CTCF位点的丧失,并重新排列CTCF基序周围的染色质景观。这与Cohesin的丧失相结合将有助于在有丝分裂期间观察到的TAD和CTCF环路损失,并揭示CTCF位点,关键架构CIS元素,在因子结合和核心定位中显示细胞周期阶段依赖性动态。

著录项

  • 来源
    《Genome research》 |2019年第2期|共14页
  • 作者单位

    Univ Massachusetts Program Syst Biol Dept Biochem &

    Mol Pharmacol Med Sch Worcester MA 01605;

    Univ Calif Berkeley Dept Mol &

    Cell Biol Li Ka Shing Ctr Biomed &

    Hlth Sci CIRM Ctr Excellence;

    Univ Massachusetts Program Syst Biol Dept Biochem &

    Mol Pharmacol Med Sch Worcester MA 01605;

    Univ Calif Berkeley Dept Mol &

    Cell Biol Li Ka Shing Ctr Biomed &

    Hlth Sci CIRM Ctr Excellence;

    Univ Massachusetts Program Syst Biol Dept Biochem &

    Mol Pharmacol Med Sch Worcester MA 01605;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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