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Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation

机译:乳腺分化期间进展超强增强剂景观控制组织特异性基因调控

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摘要

The mammary luminal lineage relies on the common cytokine-sensing transcription factor STAT5 to establish super-enhancers during pregnancy and initiate a genetic program that activates milk production. As pups grow, the greatly increasing demand for milk requires progressive differentiation of mammary cells with advancing lactation. Here we investigate how persistent hormonal exposure during lactation shapes an evolving enhancer landscape and impacts the biology of mammary cells. Employing ChIP-seq, we uncover a changing transcription factor occupancy at mammary enhancers, suggesting that their activities evolve with advancing differentiation. Using mouse genetics, we demonstrate that the functions of individual enhancers within the Wap super-enhancer evolve as lactation progresses. Most profoundly, a seed enhancer, which is mandatory for the activation of the Wap super-enhancer during pregnancy, is not required during lactation, suggesting compensatory flexibility. Combinatorial deletions of structurally equivalent constituent enhancers demonstrated differentiation-specific compensatory activities during lactation. We also demonstrate that the Wap super-enhancer, which is built on STAT5 and other common transcription factors, retains its exquisite mammary specificity when placed into globally permissive chromatin, suggesting a limited role of chromatin in controlling cell specificity. Our studies unveil a previously unrecognized progressive enhancer landscape where structurally equivalent components serve unique and differentiation-specific functions.
机译:乳腺管腔谱系依赖于共同细胞因子检测转录因子STAT5怀孕期间建立超促进剂和引发遗传程序激活牛奶产量。随着幼崽长大,牛奶大大增加的需求,需要乳腺细胞,促进泌乳的逐步分化。在这里,我们研究如何持续激素暴露在哺乳塑造一个不断发展的增强景观和影响乳腺细胞的生物学特性。用人的ChIP-seq的,我们在乳腺增强发现一个改变转录因子的占用,这表明他们的活动与推进差异化发展。用小鼠遗传学,我们证明了个人增强剂的Wap超增强演变为哺乳进展中的函数。最深刻的是,种子增强子,其在妊娠期间是强制性的WAP的超增强剂的活化,不哺乳期间需要,提示代偿灵活性。结构等同的结构促进剂的组合缺失哺乳期间表现出分化特异性补偿活动。我们还表明,在WAP超增强,这是建立在STAT5等常见的转录因子,当放入全球宽松的染色质,提示染色质控制细胞的特异性作用有限保留其精致的乳腺特异性。我们的研究揭示先前未知的逐步增强景观,其中结构相当的分量成为独特而分化的特定功能。

著录项

  • 来源
    《Nucleic Acids Research》 |2018年第20期|共14页
  • 作者单位

    NIDDK Lab Genet &

    Physiol US Natl Inst Hlth Bethesda MD 20892 USA;

    NIDDK Lab Genet &

    Physiol US Natl Inst Hlth Bethesda MD 20892 USA;

    Konkuk Univ Dept Biomed Sci &

    Engn Seoul 05029 South Korea;

    NHLBI Transgen Core US Natl Inst Hlth Bldg 10 Bethesda MD 20892 USA;

    NIDDK Lab Genet &

    Physiol US Natl Inst Hlth Bethesda MD 20892 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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