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首页> 外文期刊>Nucleic Acids Research >Alteration of CTCF-associated chromatin neighborhood inhibits TAL1-driven oncogenic transcription program and leukemogenesis
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Alteration of CTCF-associated chromatin neighborhood inhibits TAL1-driven oncogenic transcription program and leukemogenesis

机译:CTCF相关染色质邻域的改变抑制了Tal1驱动的致癌转录程序和白血病

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摘要

Aberrant activation of the TAL1 is associated with up to 60% of TALL cases and is involved in CTCF-mediated genome organization within the TAL1 locus, suggesting that CTCF boundary plays a pathogenic role in T-ALL. Here, we show that -31-Kb CTCF binding site (-31CBS) serves as chromatin boundary that defines topologically associating domain (TAD) and enhancer/promoter interaction required for TAL1 activation. Deleted or inverted -31CBS impairs TAL1 expression in a context-dependent manner. Deletion of -31CBS reduces chromatin accessibility and blocks long-range interaction between the +51 erythroid enhancer and TAL1 promoter-1 leading to inhibition of TAL1 expression in erythroid cells, but not T-ALL cells. However, in TAL1-expressing T-ALL cells, the leukemiaprone TAL1 promoter-IV specifically interacts with the +19 stem cell enhancer located 19 Kb downstream of TAL1 and this interaction is disrupted by the -31CBS inversion in T-ALL cells. Inversion of -31CBS in Jurkat cells alters chromatin accessibility, histone modifications and CTCF-mediated TAD leading to inhibition of TAL1 expression and TAL1-driven leukemogenesis. Thus, our data reveal that -31CBS acts as critical regulator to define +19-enhancer and the leukemic prone promoter IV interaction for TAL1 activation in T-ALL. Manipulation of CTCF boundary can alter TAL1 TAD and oncogenic transcription networks in leukemogenesis.
机译:TAL1的异常激活与高达60%的高案例相关,并且参与了TAL1基因座内的CTCF介导的基因组组织,表明CTCF边界在T-全部发挥致病作用。在此,我们表明-31-KB CTCF结合位点(-31CB)用作染色质边界,其定义拓扑缔畴(TAD)和TAL1活化所需的增强剂/启动子相互作用。删除或倒置-31CBS以上下文的方式损害Tal1表达。缺失-31cbs可减少染色质可用性,并阻断+ 51红外增强剂和TAL1启动子-1之间的远程相互作用,导致抑制红细胞细胞中的TAL1表达,但不是所有细胞。然而,在表达Tal1的T-all细胞中,白血病术Tal1启动子-IV特异性地与位于Tal1下游的19kb的+19干细胞增强子相互作用,并且该相互作用被-31CBS反转破坏T-所有细胞中。 Jurkat细胞中-31CBS的反转改变了染色质可用性,组蛋白修饰和CTCF介导的TAD,导致抑制TAL1表达和TAL1驱动的白血病。因此,我们的数据显示-31CBS充当临界调节剂以定义+ 19-增强剂和白血病易受启动子IV相互作用的TAL1在T-all中。 CTCF边界的操纵可以改变白血病中的TAL1 TAD和致癌转录网络。

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  • 来源
    《Nucleic Acids Research》 |2020年第6期|共15页
  • 作者单位

    Penn State Univ Dept Pediat &

    Pharmacol Coll Med Hershey PA 17033 USA;

    Univ Florida Dept Biochem &

    Mol Biol Coll Med Gainesville FL 32610 USA;

    Penn State Univ Dept Pediat &

    Pharmacol Coll Med Hershey PA 17033 USA;

    Ottawa Hosp Res Inst Sprott Ctr Stem Cell Res Regenerat Med Program Res Inst Ottawa ON K1H 8L6 Canada;

    Univ Florida Dept Biochem &

    Mol Biol Coll Med Gainesville FL 32610 USA;

    Penn State Univ Dept Pediat &

    Pharmacol Coll Med Hershey PA 17033 USA;

    Penn State Univ Dept Pediat &

    Pharmacol Coll Med Hershey PA 17033 USA;

    Penn State Univ Dept Pediat &

    Pharmacol Coll Med Hershey PA 17033 USA;

    NHLBI Lab Mol Immunol NIH Bethesda MD 20814 USA;

    Jinan Univ Inst Hematol Med Coll Guangzhou 510632 Peoples R China;

    NHLBI Lab Mol Immunol NIH Bethesda MD 20814 USA;

    Ottawa Hosp Res Inst Sprott Ctr Stem Cell Res Regenerat Med Program Res Inst Ottawa ON K1H 8L6 Canada;

    Penn State Univ Dept Pediat &

    Pharmacol Coll Med Hershey PA 17033 USA;

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  • 正文语种 eng
  • 中图分类 生物化学;
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