Whitehead Institute for Biomedical Research, Cambridge, MA 02142, USA.
Genomics. 2012 Nov;100(5):320-6. doi: 10.1016/j.ygeno.2012.07.006. Epub 2012 Jul 20.
TrxG and PcG complexes play key roles in the epigenetic regulation of development through H3K4me3 and H3K27me3 modification at specific sites throughout the human genome, but how these sites are selected is poorly understood. We find that in pluripotent cells, clustered CpG-islands at genes predict occupancy of H3K4me3 and H3K27me3, and these "bivalent" chromatin domains precisely span the boundaries of CpG-island clusters. These relationships are specific to pluripotent stem cells and are not retained at H3K4me3 and H3K27me3 sites unique to differentiated cells. We show that putative transcripts from clustered CpG-islands predict stem-loop structures characteristic of those bound by PcG complexes, consistent with the possibility that RNA facilitates PcG recruitment or maintenance at these sites. These studies suggest that CpG-island structure plays a fundamental role in establishing developmentally important chromatin structures in the pluripotent genome, and a subordinate role in establishing TrxG/PcG chromatin structure at sites unique to differentiated cells.
TrxG 和 PcG 复合物通过在人类基因组的特定位置对 H3K4me3 和 H3K27me3 进行修饰,在发育的表观遗传调控中发挥关键作用,但这些位点是如何被选择的还知之甚少。我们发现,在多能细胞中,基因簇集的 CpG 岛预测 H3K4me3 和 H3K27me3 的占据,并且这些“双价”染色质结构域精确地跨越 CpG 岛簇集的边界。这些关系是多能干细胞特有的,在分化细胞特有的 H3K4me3 和 H3K27me3 位点上并不保留。我们表明,来自簇集 CpG 岛的假定转录本预测与 PcG 复合物结合的茎环结构特征,这与 RNA 有助于 PcG 复合物在这些位点的招募或维持的可能性一致。这些研究表明,CpG 岛结构在多能基因组中建立发育相关的重要染色质结构方面发挥着基础性作用,而在建立特化细胞中特有的 TrxG/PcG 染色质结构方面发挥着次要作用。