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Conservation and innovation in the DUX4-family gene network

机译:Dux4-Family Gene网络的保护与创新

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摘要

Facioscapulohumeral dystrophy (FSHD; MIM158900, MIM158901) is caused by misexpression of the DUX4 transcription factor in skeletal muscle(1). Animal models of FSHD are hindered by incomplete knowledge regarding the conservation of the DUX4 transcriptional program in other species(2-5). Despite the divergence of their binding motifs, both mouse DUX and human DUX4 in mouse and human muscle cells, respectively, activate genes associated with cleavage-stage embryos, including MERVL and ERVL-MaLR retrotransposons. We found that human DUX4 expressed in mouse cells maintained modest activation of cleavage-stage genes driven by conventional promoters but did not activate MERVL-promoted genes. Thus, the ancestral DUX4-regulated genes are characteristic of cleavage-stage embryos and are driven by conventional promoters, whereas divergence of the DUX4 and DUX homeodomains correlates with retrotransposon specificity. These results provide insight into how species balance conservation of a core transcriptional program with innovation at retrotransposon promoters, and establish a basis for animal models recreating the FSHD transcriptome.
机译:面间肺形营养不良(FSHD; MIM158900,MIM158901)是由骨骼肌(1)中Dux4转录因子的Misexpression引起的。 FSHD的动物模型受到其他物种中Dux4转录程序(2-5)的Dux4转录程序的不完整知识。尽管它们的结合基序分散了鼠标和人类肌肉细胞中的小鼠Dux和人Dux4,但激活与裂解阶段胚胎相关的基因,包括Mervl和Ervl-Malr回复转移。我们发现在小鼠细胞中表达的人Dux4保持适度激活常规启动子驱动的切割阶段基因,但未激活促进植物促进的基因。因此,祖先Dux4-调节基因是切割阶段胚胎的特征,并且由常规启动子驱动,而Dux4和Dux HomoDomains的差异与转回特异性相关。这些结果介绍了如何在Retrotransposon启动子的创新中平衡核心转录计划的核心转录计划的洞察,并为重建FSHD转录组的动物模型建立基础。

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  • 来源
    《Nature Genetics》 |2017年第6期|共8页
  • 作者单位

    Fred Hutchinson Canc Res Ctr Div Human Biol 1124 Columbia St Seattle WA 98104 USA;

    Fred Hutchinson Canc Res Ctr Div Human Biol 1124 Columbia St Seattle WA 98104 USA;

    Fred Hutchinson Canc Res Ctr Div Human Biol 1124 Columbia St Seattle WA 98104 USA;

    Fred Hutchinson Canc Res Ctr Div Human Biol 1124 Columbia St Seattle WA 98104 USA;

    Fred Hutchinson Canc Res Ctr Div Human Biol 1124 Columbia St Seattle WA 98104 USA;

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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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