A low-input high resolution sequential chromatin immunoprecipitation method captures genome-wide dynamics of bivalent chromatin.

IF 4.2 2区 生物学 Q1 GENETICS & HEREDITY
Janith A Seneviratne, William W H Ho, Eleanor Glancy, Melanie A Eckersley-Maslin
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引用次数: 0

Abstract

Background: Bivalent chromatin is an exemplar of epigenetic plasticity. This co-occurrence of active-associated H3K4me3 and inactive-associated H3K27me3 histone modifications on opposite tails of the same nucleosome occurs predominantly at promoters that are poised for future transcriptional upregulation or terminal silencing. We know little of the dynamics, resolution, and regulation of this chromatin state outside of embryonic stem cells where it was first described. This is partly due to the technical challenges distinguishing bone-fide bivalent chromatin, where both marks are on the same nucleosome, from allelic or sample heterogeneity where there is a mix of H3K4me3-only and H3K27me3-only mononucleosomes.

Results: Here, we present a robust and sensitive method to accurately map bivalent chromatin genome-wide, along with controls, from as little as 2 million cells. We optimized and refined the sequential ChIP protocol which uses two sequential overnight immunoprecipitation reactions to robustly purify nucleosomes that are truly bivalent and contain both H3K4me3 and H3K27me3 modifications. Our method generates high quality genome-wide maps with strong peak enrichment and low background, which can be analyzed using standard bioinformatic packages. Using this method, we detect 8,789 bivalent regions in mouse embryonic stem cells corresponding to 3,918 predominantly CpG rich and developmentally regulated gene promoters. Furthermore, profiling Dppa2/4 knockout mouse embryonic stem cells, which lose both H3K4me3 and H3K27me3 at approximately 10% of bivalent promoters, demonstrated the ability of our method to capture bivalent chromatin dynamics.

Conclusions: Our optimized sequential reChIP method enables high-resolution genome-wide assessment of bivalent chromatin together with all required controls in as little as 2 million cells. We share a detailed protocol and guidelines that will enable bivalent chromatin landscapes to be generated in a range of cellular contexts, greatly enhancing our understanding of bivalent chromatin and epigenetic plasticity beyond embryonic stem cells.

低投入高分辨率染色质免疫沉淀序列法捕捉二价染色质的全基因组动态。
背景:二价染色质是表观遗传可塑性的典范。活性相关的H3K4me3和非活性相关的H3K27me3组蛋白修饰同时出现在同一核小体的相对尾部,主要发生在启动子上,这些启动子准备在未来进行转录上调或末端沉默。在胚胎干细胞之外,我们对这种染色质状态的动态、解析和调控知之甚少。这部分是由于区分骨性双价染色质(两种标记都在同一个核小体上)与等位基因或样本异质性(仅有H3K4me3和仅有H3K27me3的单核小体混合在一起)的技术挑战:在这里,我们提出了一种稳健而灵敏的方法,可从少至 200 万个细胞中准确绘制全基因组的二价染色质图谱以及对照图谱。我们优化并改进了序贯 ChIP 方案,该方案使用两个序贯过夜免疫沉淀反应来强力纯化真正的二价核糖体,这些核糖体同时含有 H3K4me3 和 H3K27me3 修饰。我们的方法能生成高质量的全基因组图谱,具有强峰值富集和低背景,可使用标准生物信息软件包进行分析。利用这种方法,我们在小鼠胚胎干细胞中检测到 8789 个二价区域,对应于 3918 个主要富含 CpG 且受发育调控的基因启动子。此外,Dppa2/4基因敲除的小鼠胚胎干细胞在大约10%的二价启动子上同时丢失了H3K4me3和H3K27me3,这表明我们的方法能够捕获二价染色质动态:我们优化的顺序 reChIP 方法能在 200 万个细胞内对二价染色质及所有必要的对照进行高分辨率的全基因组评估。我们分享了详细的方案和指南,这将使二价染色质景观能够在一系列细胞环境中生成,从而大大提高我们对胚胎干细胞以外的二价染色质和表观遗传可塑性的理解。
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来源期刊
Epigenetics & Chromatin
Epigenetics & Chromatin GENETICS & HEREDITY-
CiteScore
7.00
自引率
0.00%
发文量
35
审稿时长
1 months
期刊介绍: Epigenetics & Chromatin is a peer-reviewed, open access, online journal that publishes research, and reviews, providing novel insights into epigenetic inheritance and chromatin-based interactions. The journal aims to understand how gene and chromosomal elements are regulated and their activities maintained during processes such as cell division, differentiation and environmental alteration.
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