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Chromatin-Mediated Reversible Silencing of Sense-Antisense Gene Pairs in Embryonic Stem Cells Is Consolidated upon Differentiation

机译:染色介导的胚胎干细胞中有义-反义基因对的可逆沉默在分化后得以巩固。

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摘要

Genome-wide gene expression studies have indicated that the eukaryotic genome contains many gene pairs showing overlapping sense and antisense transcription. Regulation of these coding and/or noncoding gene pairs involves intricate regulatory mechanisms. In the present study, we utilized an enhanced green fluorescent protein (EGFP)-tagged reporter plasmid cis linked to a doxycycline-inducible antisense promoter, generating antisense transcription that fully overlaps EGFP, to study the mechanism and dynamics of gene silencing after induction of noncoding antisense transcription in undifferentiated and differentiating mouse embryonic stem cells (ESCs). We found that EGFP silencing is reversible in ESCs but is locked into a stable state upon ESC differentiation. Reversible silencing in ESCs is chromatin dependent and is associated with accumulation of trimethylated lysine 36 on histone H3 (H3K36me3) at the EGFP promoter region. In differentiating ESCs, antisense transcription-induced accumulation of H3K36me3 was associated with an increase in CpG methylation at the EGFP promoter. Repression of the sense promoter was affected by small-molecule inhibitors which interfere with DNA methylation and histone demethylation pathways. Our results indicate a general mechanism for silencing of fully overlapping sense-antisense gene pairs involving antisense transcription-induced accumulation of H3K36me3 at the sense promoter, resulting in reversible silencing of the sense partner, which is stabilized during ESC differentiation by CpG methylation.
机译:全基因组基因表达研究表明,真核生物基因组包含许多显示有义和反义转录重叠的基因对。这些编码和/或非编码基因对的调控涉及复杂的调控机制。在本研究中,我们利用与强力霉素诱导的反义启动子连接的增强型绿色荧光蛋白(EGFP)标签报道基因质粒cis,产生与EGFP完全重叠的反义转录,以研究非编码诱导后基因沉默的机制和动力学。未分化和分化的小鼠胚胎干细胞(ESC)中的反义转录。我们发现,EGFP沉默在ESC中是可逆的,但在ESC分化后被锁定为稳定状态。 ESC中的可逆沉默是染色质依赖性的,并且与三甲基化赖氨酸36在EGFP启动子区域的组蛋白H3(H3K36me3)上的积累有关。在分化的ESC中,反义转录诱导的H3K36me3积累与EGFP启动子处CpG甲基化的增加有关。有义启动子的抑制受到干扰DNA甲基化和组蛋白去甲基化途径的小分子抑制剂的影响。我们的结果表明沉默机制的完全重叠的正义-反义基因对的一般机制涉及反义转录诱导的H3K36me3在正义启动子处的积累,导致正义伴侣的可逆沉默,这是通过CpG甲基化在ESC分化过程中稳定的。

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