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CBP-mediated acetylation of histone H3 lysine 27 antagonizes Drosophila Polycomb silencing.

机译:CBP介导的组蛋白H3赖氨酸27的乙酰化拮抗果蝇多梳沉默。

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Trimethylation of histone H3 lysine 27 (H3K27me3) by Polycomb repressive complex 2 (PRC2) is essential for transcriptional silencing of Polycomb target genes, whereas acetylation of H3K27 (H3K27ac) has recently been shown to be associated with many active mammalian genes. The Trithorax protein (TRX), which associates with the histone acetyltransferase CBP, is required for maintenance of transcriptionally active states and antagonizes Polycomb silencing, although the mechanism underlying this antagonism is unknown. Here we show that H3K27 is specifically acetylated by Drosophila CBP and its deacetylation involves RPD3. H3K27ac is present at high levels in early embryos and declines after 4 hours as H3K27me3 increases. Knockdown of E(Z) decreases H3K27me3 and increases H3K27ac in bulk histones and at the promoter of the repressed Polycomb target gene abd-A, suggesting that these indeed constitute alternative modifications at some H3K27 sites. Moderate overexpression of CBP in vivo causes a global increase in H3K27ac and a decrease in H3K27me3, and strongly enhances Polycomb mutant phenotypes. We also show that TRX is required for H3K27 acetylation. TRX overexpression also causes an increase in H3K27ac and a concomitant decrease in H3K27me3 and leads to defects in Polycomb silencing. Chromatin immunoprecipitation coupled with DNA microarray (ChIP-chip) analysis reveals that H3K27ac and H3K27me3 are mutually exclusive and that H3K27ac and H3K4me3 signals coincide at most sites. We propose that TRX-dependent acetylation of H3K27 by CBP prevents H3K27me3 at Polycomb target genes and constitutes a key part of the molecular mechanism by which TRX antagonizes or prevents Polycomb silencing.
机译:Polycomb抑制复合物2(PRC2)对组蛋白H3赖氨酸27(H3K27me3)的三甲基化作用对于Polycomb目标基因的转录沉默是必不可少的,而最近H3K27(H3K27ac)的乙酰化已被证明与许多活跃的哺乳动物基因有关。与组蛋白乙酰基转移酶CBP相关的Trithorax蛋白(TRX)是维持转录活性状态并拮抗Polycomb沉默所必需的,尽管这种拮抗作用的机制尚不清楚。在这里,我们显示H3K27被果蝇CBP特异性乙酰化,其脱乙酰基涉及RPD3。 H3K27ac在早期胚胎中含量很高,并且随着H3K27me3的增加而在4小时后下降。击倒E(Z)会降低H3K27me3并增加H3K27ac的整体组蛋白和阻遏的Polycomb靶基因abd-A的启动子,表明这些确实构成了某些H3K27位点的替代修饰。体内CBP的过度表达会导致H3K27ac的整体升高和H3K27me3的降低,并强烈增强Polycomb突变体的表型。我们还表明,H3K27乙酰化需要TRX。 TRX过表达还会导致H3K27ac的增加和H3K27me3的同时减少,并导致Polycomb沉默的缺陷。染色质免疫沉淀与DNA芯片(ChIP芯片)分析相结合,发现H3K27ac和H3K27me3是互斥的,并且H3K27ac和H3K4me3信号在大多数位点重合。我们提出,CBP对H3K27的TRX依赖性乙酰化可防止Polycomb目标基因处的H3K27me3,并构成TRX拮抗或阻止Polycomb沉默的分子机制的关键部分。

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