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Analysis of an artificial zinc finger epigenetic modulator: widespread binding but limited regulation

机译:人工锌指表观遗传调节剂的分析:广泛的绑定,但监管有限

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Artificial transcription factors (ATFs) and genomic nucleases based on a DNA binding platform consisting of multiple zinc finger domains are currently being developed for clinical applications. However, no genome-wide investigations into their binding specificity have been performed. We have created six-finger ATFs to target two different 18 nt regions of the human SOX2 promoter; each ATF is constructed such that it contains or lacks a super KRAB domain (SKD) that interacts with a complex containing repressive histone methyltransferases. ChIP-seq analysis of the effector-free ATFs in MCF7 breast cancer cells identified thousands of binding sites, mostly in promoter regions; the addition of an SKD domain increased the number of binding sites similar to 5-fold, with a majority of the new sites located outside of promoters. De novo motif analyses suggest that the lack of binding specificity is due to subsets of the finger domains being used for genomic interactions. Although the ATFs display widespread binding, few genes showed expression differences; genes repressed by the ATF-SKD have stronger binding sites and are more enriched for a 12 nt motif. Interestingly, epigenetic analyses indicate that the transcriptional repression caused by the ATF-SKD is not due to changes in active histone modifications.
机译:目前正在开发基于由多个锌指结构域组成的DNA结合平台的人工转录因子(ATF)和基因组核酸酶,以用于临床应用。然而,尚未对其结合特异性进行全基因组研究。我们已经创建了六指ATF来靶向人类SOX2启动子的两个不同的18 nt区域。每个ATF的结构均应使其包含或不包含与含有抑制性组蛋白甲基转移酶的复合物相互作用的超级KRAB域(SKD)。对MCF7乳腺癌细胞中无效应子的ATF进行ChIP-seq分析,鉴定出数千个结合位点,其中大部分位于启动子区域。 SKD结构域的添加使结合位点的数量增加了近5倍,其中大多数新位点位于启动子之外。从头基序分析表明缺乏结合特异性是由于手指域的子集被用于基因组相互作用。尽管ATF显示出广泛的结合,但很少有基因显示出表达差异。被ATF-SKD抑制的基因具有更强的结合位点,并具有更丰富的12 nt基序。有趣的是,表观遗传学分析表明由ATF-SKD引起的转录抑制不是由于活性组蛋白修饰的变化所致。

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