Sen Subhojit, Block Kirsten F, Pasini Alice, Baylin Stephen B, Easwaran Hariharan
CRB1, Room 530, Department of Oncology and The Sidney Kimmel Comprehensive Cancer Center at Johns Hopkins, The Johns Hopkins University School of Medicine, Baltimore, 21287, MD, USA.
UM-DAE Centre for Excellence in Basic Sciences, University of Mumbai, Kalina Campus, Santacruz (East), Mumbai, 400098, India.
BMC Med Genomics. 2016 Sep 15;9(1):60. doi: 10.1186/s12920-016-0221-6.
Bivalent chromatin refers to overlapping regions containing activating histone H3 Lys4 trimethylation (H3K4me3) and inactivating H3K27me3 marks. Existence of such bivalent marks on the same nucleosome has only recently been suggested. Previous genome-wide efforts to characterize bivalent chromatin have focused primarily on individual marks to define overlapping zones of bivalency rather than mapping positions of truly bivalent mononucleosomes.
Here, we developed an efficacious sequential ChIP technique for examining global positioning of individual bivalent nucleosomes. Using next generation sequencing approaches we show that although individual H3K4me3 and H3K27me3 marks overlap in broad zones, bivalent nucleosomes are focally enriched in the vicinity of the transcription start site (TSS). These seem to occupy the H2A.Z nucleosome positions previously described as salt-labile nucleosomes, and are correlated with low gene expression. Although the enrichment profiles of bivalent nucleosomes show a clear dependency on CpG island content, they demonstrate a stark anti-correlation with methylation status.
We show that regional overlap of H3K4me3 and H3K27me3 chromatin tend to be upstream to the TSS, while bivalent nucleosomes with both marks are mainly promoter proximal near the TSS of CpG island-containing genes with poised/low expression. We discuss the implications of the focal enrichment of bivalent nucleosomes around the TSS on the poised chromatin state of promoters in stem cells.
二价染色质是指包含激活型组蛋白H3赖氨酸4三甲基化(H3K4me3)和失活型H3K27me3标记的重叠区域。同一核小体上存在此类二价标记的情况直到最近才被提出。以往全基因组层面表征二价染色质的研究主要聚焦于单个标记以定义二价重叠区域,而非绘制真正二价单核小体的位置。
在此,我们开发了一种有效的序列ChIP技术,用于检测单个二价核小体的全局定位。使用新一代测序方法,我们发现尽管单个H3K4me3和H3K27me3标记在广泛区域重叠,但二价核小体在转录起始位点(TSS)附近局部富集。这些核小体似乎占据了先前被描述为盐敏感核小体的H2A.Z核小体位置,并且与低基因表达相关。尽管二价核小体的富集图谱显示出对CpG岛含量的明显依赖性,但它们与甲基化状态呈现出强烈的负相关。
我们表明,H3K4me3和H3K27me3染色质的区域重叠倾向于位于TSS上游,而带有这两种标记的二价核小体主要位于含CpG岛基因TSS附近的启动子近端,这些基因处于 poised/低表达状态。我们讨论了TSS周围二价核小体局部富集对干细胞中启动子的 poised 染色质状态的影响。