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首页> 外文期刊>Genome Biology >The lncRNA Firre anchors the inactive X chromosome to the nucleolus by binding CTCF and maintains H3K27me3 methylation
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The lncRNA Firre anchors the inactive X chromosome to the nucleolus by binding CTCF and maintains H3K27me3 methylation

机译:lncRNA Firre通过结合CTCF将无活性的X染色体锚定在核仁上并维持H3K27me3甲基化

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Background: In mammals, X chromosome genes are present in one copy in males and two in females. To balance the dosage of X-linked gene expression between the sexes, one of the X chromosomes in females is silenced. X inactivation is initiated by upregulation of the lnc RNA (long non-coding RNA) Xist and recruitment of specific chromatin modifiers. The inactivated X chromosome becomes heterochromatic and visits a specific nuclear compartment adjacent to the nucleolus. Results: Here, we show a novel role for the lnc RNA Firre in anchoring the inactive mouse X chromosome and preserving one of its main epigenetic features, H3K27me3. Similar to Dxz4, Firre is X-linked and expressed from a macrosatellite repeat locus associated with a cluster of CTCF and cohesin binding sites, and is preferentially located adjacent to the nucleolus. CTCF binding present initially in both male and female mouse embryonic stem cells is lost from the active X during development. Knockdown of Firre disrupts perinucleolar targeting and H3K27me3 levels in mouse fibroblasts, demonstrating a role in maintenance of an important epigenetic feature of the inactive X chromosome. No X-linked gene reactivation is seen after Firre knockdown; however, a compensatory increase in the expression of chromatin modifier genes implicated in X silencing is observed. Further experiments in female embryonic stem cells suggest that Firre does not play a role in X inactivation onset. Conclusions: The X-linked lnc RNA Firre helps to position the inactive X chromosome near the nucleolus and to preserve one of its main epigenetic features.
机译:背景:在哺乳动物中,X染色体基因在男性中有一个拷贝,在女性中有两个。为了平衡两性之间X连锁基因表达的剂量,雌性的X染色体之一被沉默。 X灭活是通过上调lnc RNA(长非编码RNA)Xist并募集特定的染色质修饰剂来启动的。灭活的X染色体变为异色,并到达与核仁相邻的特定核区室。结果:在这里,我们展示了lnc RNA Firre在锚定不活动的小鼠X染色体并保留其主要表观遗传特征之一H3K27me3中的新作用。与Dxz4相似,Firre是X链连接的,并从与CTCF和黏附素结合位点簇相关的大卫星重复位点表达,并且优先位于核仁附近。最初在雄性和雌性小鼠胚胎干细胞中都存在的CTCF结合在发育过程中从活性X丧失。敲除Firre会破坏小鼠成纤维细胞中的核仁靶向性和H3K27me3水平,这表明在维持非活跃X染色体的重要表观遗传特征中起作用。 Firre敲低后未见X连锁基因重新激活;然而,观察到与X沉默有关的染色质修饰基因表达的补偿性增加。在雌性胚胎干细胞中进行的进一步实验表明,Firre在X失活发作中不起作用。结论:X连锁的lnc RNA冷杉有助于将无活性的X染色体定位在核仁附近,并保留其主要表观遗传特征之一。

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