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Targeted cytosine methylation for in vivo detection of protein-DNA interactions

机译:靶向胞嘧啶甲基化可用于体内检测蛋白质-DNA相互作用

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We report a technique, named targeted gene methylation (TAGM), for identifying in vivo protein-binding sites in chromatin. M.CviPl, a cytosine-5 DNA methyltransferase recognizing GC sites, is fused to a DNA-binding factor enabling simultaneous detection of targeted methylation, factor footprints, and chromatin structural changes by bisulfite genomic sequencing. Using TAGM with the yeast transactivator Pho4, methylation enrichments of up to 34-fold occur proximal to native Pho4-binding sites. Additionally, significant selective targeting of methylation is observed several hundred nucleoticles away, suggesting the detection of long-range interactions due to higher-order chromatin structure. In contrast, at an extragenic locus lacking Pho4-binding sites, methylation levels are at the detection limit at early times after Pho4 transactivation. Notably, substantial amounts of methylation are targeted by Pho4-M.CviPl under repressive conditions when most of the transactivator is excluded from the nucleus. Thus, TAGM enables rapid detection of DNA-protein interactions even at low occupancies and has potential for identifying factor targets at the genome-wide level. Extension of TAGM from yeast to vertebrates, which use methylation to initiate and propagate repressed chromatin, could also provide a valuable strategy for heritable inactivation of gene expression. [References: 41]
机译:我们报告了一种技术,称为靶向基因甲基化(TAGM),用于识别染色质中的体内蛋白质结合位点。 M.CviPl是一种识别GC位点的胞嘧啶5 DNA甲基转移酶,与DNA结合因子融合,可通过亚硫酸氢盐基因组测序同时检测目标甲基化,因子足迹和染色质结构变化。将TAGM与酵母反式激活剂Pho4结合使用时,甲基化富集最多34倍,发生在天然Pho4结合位点附近。此外,在数百个核苷酸外观察到了显着的甲基化选择性靶向,这表明由于高阶染色质结构而导致的长距离相互作用的检测。相反,在缺乏Pho4结合位点的外源基因座上,甲基化水平在Pho4反式激活后的早期处于检测极限。值得注意的是,当大部分反式激活剂被排除在细胞核之外时,Pho4-M.CviP1在阻遏条件下会靶向大量甲基化。因此,TAGM即使在低占用率下也能够快速检测DNA-蛋白质相互作用,并具有在全基因组水平上鉴定因子靶标的潜力。 TAGM从酵母到脊椎动物的扩展,使用甲基化来启动和繁殖抑制的染色质,也可以为基因表达的遗传失活提供有价值的策略。 [参考:41]

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