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全基因组芯片分析揭示了CTCF在果蝇基因组组织中的重要作用。

Genome wide ChIP-chip analyses reveal important roles for CTCF in Drosophila genome organization.

作者信息

Smith Sheryl T, Wickramasinghe Priyankara, Olson Andrew, Loukinov Dmitri, Lin Lan, Deng Joy, Xiong Yanping, Rux John, Sachidanandam Ravi, Sun Hao, Lobanenkov Victor, Zhou Jumin

机构信息

The Wistar Institute, 3601 Spruce Street, Philadelphia, PA 19104, USA.

出版信息

Dev Biol. 2009 Apr 15;328(2):518-28. doi: 10.1016/j.ydbio.2008.12.039. Epub 2009 Jan 8.

DOI:10.1016/j.ydbio.2008.12.039
PMID:19210964
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6620017/
Abstract

Insulators or chromatin boundary elements are defined by their ability to block transcriptional activation by an enhancer and to prevent the spread of active or silenced chromatin. Recent studies have increasingly suggested that insulator proteins play a role in large-scale genome organization. To better understand insulator function on the global scale, we conducted a genome-wide analysis of the binding sites for the insulator protein CTCF in Drosophila by Chromatin Immunoprecipitation (ChIP) followed by a tiling-array analysis. The analysis revealed CTCF binding to many known domain boundaries within the Abd-B gene of the BX-C including previously characterized Fab-8 and MCP insulators, and the Fab-6 region. Based on this finding, we characterized the Fab-6 insulator element. In genome-wide analysis, we found that dCTCF-binding sites are often situated between closely positioned gene promoters, consistent with the role of CTCF as an insulator protein. Importantly, CTCF tends to bind gene promoters just upstream of transcription start sites, in contrast to the predicted binding sites of the insulator protein Su(Hw). These findings suggest that CTCF plays more active roles in regulating gene activity and it functions differently from other insulator proteins in organizing the Drosophila genome.

摘要

绝缘子或染色质边界元件是由其阻断增强子介导的转录激活以及防止活性或沉默染色质扩散的能力所定义的。最近的研究越来越多地表明,绝缘子蛋白在大规模基因组组织中发挥作用。为了在全球范围内更好地理解绝缘子功能,我们通过染色质免疫沉淀(ChIP)结合平铺阵列分析,对果蝇中绝缘子蛋白CTCF的结合位点进行了全基因组分析。分析揭示了CTCF与BX-C的Abd-B基因内许多已知的结构域边界结合,包括先前已表征的Fab-8和MCP绝缘子以及Fab-6区域。基于这一发现,我们对Fab-6绝缘子元件进行了表征。在全基因组分析中,我们发现dCTCF结合位点通常位于紧密相邻的基因启动子之间,这与CTCF作为绝缘子蛋白的作用一致。重要的是,与绝缘子蛋白Su(Hw)的预测结合位点相反,CTCF倾向于结合转录起始位点上游的基因启动子。这些发现表明,CTCF在调节基因活性方面发挥着更积极的作用,并且在组织果蝇基因组中其功能与其他绝缘子蛋白不同。

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Genome wide ChIP-chip analyses reveal important roles for CTCF in Drosophila genome organization.全基因组芯片分析揭示了CTCF在果蝇基因组组织中的重要作用。
Dev Biol. 2009 Apr 15;328(2):518-28. doi: 10.1016/j.ydbio.2008.12.039. Epub 2009 Jan 8.
2
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Drosophila CTCF tandemly aligns with other insulator proteins at the borders of H3K27me3 domains.果蝇 CTCF 串联排列与其他绝缘子蛋白在 H3K27me3 结构域的边界处。
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The phylogenetic distribution of non-CTCF insulator proteins is limited to insects and reveals that BEAF-32 is Drosophila lineage specific.非 CTCF 绝缘子蛋白的系统发生分布仅限于昆虫,并表明 BEAF-32 是果蝇谱系特异性的。
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Active promoters and insulators are marked by the centrosomal protein 190.活跃启动子和绝缘子由中心体蛋白190标记。
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本文引用的文献

1
CTCF physically links cohesin to chromatin.CTCF将黏连蛋白物理连接至染色质。
Proc Natl Acad Sci U S A. 2008 Jun 17;105(24):8309-14. doi: 10.1073/pnas.0801273105. Epub 2008 Jun 11.
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Cohesins functionally associate with CTCF on mammalian chromosome arms.黏连蛋白在哺乳动物染色体臂上与CCCTC结合因子(CTCF)发生功能关联。
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Cohesin mediates transcriptional insulation by CCCTC-binding factor.黏连蛋白通过CCCTC结合因子介导转录绝缘。
CTCF 与其睾丸特异性同源物 BORIS 的共同作用对于精子发生是必不可少的。
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Tales from topographic oceans: topologically associated domains and cancer.拓扑海洋的传说:拓扑关联域与癌症。
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The BEN Domain Protein Insensitive Binds to the Chromatin Boundary To Establish Proper Segmental Identity in .BEN 结构域蛋白不敏感结合到染色质边界,以建立正确的节段性身份。
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The Ubx Polycomb response element bypasses an unpaired Fab-8 insulator via cis transvection in Drosophila.Ubx 多梳反应元件通过顺式反transvection 绕过果蝇中的未配对 Fab-8 绝缘子。
PLoS One. 2018 Jun 21;13(6):e0199353. doi: 10.1371/journal.pone.0199353. eCollection 2018.
8
Topological organization and dynamic regulation of human tRNA genes during macrophage differentiation.人类 tRNA 基因在巨噬细胞分化过程中的拓扑组织和动态调控。
Genome Biol. 2017 Sep 20;18(1):180. doi: 10.1186/s13059-017-1310-3.
9
CTCF interacts with the lytic HSV-1 genome to promote viral transcription.CTCF 与裂解型 HSV-1 基因组相互作用,促进病毒转录。
Sci Rep. 2017 Jan 3;7:39861. doi: 10.1038/srep39861.
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Different Evolutionary Strategies To Conserve Chromatin Boundary Function in the Bithorax Complex.在双胸复合体中保守染色质边界功能的不同进化策略。
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Cohesins localize with CTCF at the KSHV latency control region and at cellular c-myc and H19/Igf2 insulators.黏连蛋白与CTCF定位于卡波西肉瘤相关疱疹病毒(KSHV)潜伏控制区以及细胞c-myc和H19/Igf2绝缘子处。
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The role of insulator elements in large-scale chromatin structure in interphase.绝缘子元件在间期大规模染色质结构中的作用。
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We gather together: insulators and genome organization.我们齐聚一堂:绝缘子与基因组组织。
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Polycomb response elements mediate the formation of chromosome higher-order structures in the bithorax complex.多梳反应元件介导双胸复合体中染色体高阶结构的形成。
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CTCF interacts with and recruits the largest subunit of RNA polymerase II to CTCF target sites genome-wide.CTCF在全基因组范围内与CTCF靶位点相互作用,并将RNA聚合酶II的最大亚基招募至这些位点。
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