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Evidence for Local Regulatory Control of Escape from Imprinted X Chromosome Inactivation

机译:从印迹X染色体失活逃逸的本地监管控制的证据。

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摘要

X chromosome inactivation (XCI) is an epigenetic process that almost completely inactivates one of two X chromosomes in somatic cells of mammalian females. A few genes are known to escape XCI and the mechanism for this escape remains unclear. Here, using mouse trophoblast stem (TS) cells, we address whether particular chromosomal interactions facilitate escape from imprinted XCI. We demonstrate that promoters of genes escaping XCI do not congregate to any particular region of the genome in TS cells. Further, the escape status of a gene was uncorrelated with the types of genomic features and gene activity located in contacted regions. Our results suggest that genes escaping imprinted XCI do so by using the same regulatory sequences as their expressed alleles on the active X chromosome. We suggest a model where regulatory control of escape from imprinted XCI is mediated by genomic elements located in close linear proximity to escaping genes.
机译:X染色体失活(XCI)是一种表观遗传过程,几乎可以完全失活哺乳动物雌性体细胞中的两个X染色体之一。已知有一些基因可以逃避XCI,而这种逃避的机制仍不清楚。在这里,使用小鼠滋养层干细胞(TS),我们解决特定的染色体相互作用是否有助于从印迹XCI逃脱。我们证明逃避XCI的基因的启动子不会聚集到TS细胞中的基因组的任何特定区域。此外,基因的逃逸状态与位于接触区域的基因组特征类型和基因活性无关。我们的结果表明,通过使用与其活跃X染色体上表达的等位基因相同的调控序列,基因可以逃脱印迹XCI。我们建议建立一个模型,其中从印迹XCI逃逸的调控控制是由与逃逸基因紧密线性接近的基因组元件介导的。

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