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TET1 modulates H4K16 acetylation by controlling auto-acetylation of hMOF to affect gene regulation and DNA repair function

机译:TET1通过控制hMOF的自乙酰化作用来调节基因调控和DNA修复功能从而调节H4K16乙酰化作用

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摘要

The Ten Eleven Translocation 1 (TET1) protein is a DNA demethylase that regulates gene expression through altering statue of DNA methylation. However, recent studies have demonstrated that TET1 could modulate transcriptional expression independent of its DNA demethylation activity; yet, the detailed mechanisms underlying TET1's role in such transcriptional regulation remain not well understood. Here, we uncovered that Tet1 formed a chromatin complex with histone acetyltransferase Mof and scaffold protein Sin3a in mouse embryonic stem cells by integrative genomic analysis using publicly available ChIP-seq data sets and a series of in vitro biochemical studies in human cell lines. Mechanistically, the TET1 facilitated chromatin affinity and enzymatic activity of hMOF against acetylation of histone H4 at lysine 16 via preventing auto-acetylation of hMOF, to regulate expression of the downstream genes, including DNA repair genes. We found that Tet1 knockout MEF cells exhibited an accumulation of DNA damage and genomic instability and Tet1 deficient mice were more sensitive to x-ray exposure. Taken together, our findings reveal that TET1 forms a complex with hMOF to modulate its function and the level of H4K16Ac ultimately affect gene expression and DNA repair.
机译:十一十一易位1(TET1)蛋白是一种DNA脱甲基酶,它通过改变DNA甲基化状态来调节基因表达。但是,最近的研究表明,TET1可以独立于其DNA脱甲基活性来调节转录表达;然而,关于TET1在这种转录调控中的作用的详细机制尚不清楚。在这里,我们发现Tet1与组蛋白乙酰基转移酶Mof和支架蛋白Sin3a在小鼠胚胎干细胞中形成了染色质复合物,方法是使用可公开获得的ChIP-seq数据集进行整合基因组分析,并在人细胞系中进行了一系列体外生化研究。从机制上讲,TET1通过阻止hMOF的自乙酰化,促进了hMOF的染色质亲和力和酶活性,以抵抗组蛋白H4在赖氨酸16处的乙酰化,从而调节了下游基因(包括DNA修复基因)的表达。我们发现敲除Tet1的MEF细胞表现出DNA损伤和基因组不稳定性的积累,而Tet1缺陷型小鼠对X射线照射更为敏感。两者合计,我们的发现表明TET1与hMOF形成复合物以调节其功能,而H4K16Ac的水平最终影响基因表达和DNA修复。

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