首页> 外文期刊>Nucleic Acids Research >Induction of XIST expression from the human active X chromosome in mouse/human somatic cell hybrids by DNA demethylation.
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Induction of XIST expression from the human active X chromosome in mouse/human somatic cell hybrids by DNA demethylation.

机译:通过DNA脱甲基作用在小鼠/人类体细胞杂种中诱导人类活跃X染色体的XIST表达。

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摘要

X chromosome inactivation occurs early in mammalian development to transcriptionally silence one of the pair of X chromosomes in females. The XIST RNA, a large untranslated RNA that is expressed solely from the inactive X chromosome, is implicated in the process of inactivation. As previous studies have shown that the XIST gene is methylated on the active X chromosome, we have treated a mouse/human somatic cell hybrid retaining an active human X chromosome with demethylating agents to determine whether expression of the human XIST gene could be induced. Stable expression of XIST was observed after several rounds of demethylation and stability of XIST expression correlated with the loss of methylation at the three sites analysed. We conclude that methylation is sufficient to inhibit expression of the XIST gene in somatic cell hybrids. No loss of expression was detected for eight other X-linked genes from the active X chromosome that was expressing XIST , suggesting that additional developmental or species-specific factors are required for the inactivation process.
机译:X染色体失活发生在哺乳动物发育的早期,使雌性X染色体对之一在转录上沉默。 XIST RNA是仅从非活性X染色体表达的大的未翻译RNA,与失活有关。如先前的研究表明,XIST基因在活性X染色体上被甲基化,我们已经用脱甲基剂处理了保留有活性人X染色体的小鼠/人体细胞杂种,以确定是否可以诱导人XIST基因的表达。几轮脱甲基化后观察到XIST的稳定表达,并且XIST表达的稳定性与所分析的三个位点的甲基化损失相关。我们得出的结论是,甲基化足以抑制XIST基因在体细胞杂种中的表达。从表达XIST的活跃X染色体上未检测到其他八个X连锁基因的表达损失,这表明灭活过程还需要其他发育或物种特异性因子。

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