首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Undifferentiated hematopoietic cells are characterized by a genome-wide undermethylation dip around the transcription start site and a hierarchical epigenetic plasticity.
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Undifferentiated hematopoietic cells are characterized by a genome-wide undermethylation dip around the transcription start site and a hierarchical epigenetic plasticity.

机译:未分化的造血细胞的特征是转录起始位点周围的全基因组甲基化程度下降和分级表观遗传可塑性。

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摘要

Evidence for the epigenetic regulation of hematopoietic stem cells (HSCs) is growing, but the genome-wide epigenetic signature of HSCs and its functional significance remain unclear. In this study, from a genome-wide comparison of CpG methylation in human CD34(+) and CD34(-) cells, we identified a characteristic undermethylation dip around the transcription start site of promoters and an overmethylation of flanking regions in undifferentiated CD34(+) cells. This bivalent-like more prominent in genes not associated with CpG islands (CGI(-)) than CGI(+) genes. Undifferentiated hematopoietic cells also exhibited dynamic chromatin associated with active transcription and a higher turnover of histone acetylation than terminally differentiated cells. Interestingly, inhibition of chromatin condensation by chemical treatment (5-azacytidine, trichostatin A) enhanced the self-renewal of "stimulated" HSCs in reconstituting bone marrows but not steady-state treatments on more mature cells caused partial phenotypic dedifferentiation and apoptosis at levels correlated with their hematopoietic differentiation. Taken together, our study reveals that the undifferentiated state of hematopoietic cells is characterized by a unique epigenetic signature, which includes dynamic chromatin structures and an epigenetic plasticity that correlates to level of undifferentiation.
机译:造血干细胞(HSCs)的表观遗传调控的证据正在增长,但是HSC的全基因组表观遗传学标志及其功能意义仍不清楚。在这项研究中,从人类CD34(+)和CD34(-)细胞中CpG甲基化的全基因组比较,我们发现启动子转录起始位点周围特征性甲基化低谷和未分化CD34(+)侧翼区域的过度甲基化) 细胞。在与CpG岛(CGI(-))不相关的基因中,这种二价像比CGI(+)基因更为突出。与终分化细胞相比,未分化的造血细胞还表现出与活性转录相关的动态染色质和更高的组蛋白乙酰化转化率。有趣的是,通过化学处理(5-氮杂胞苷,曲古抑菌素A)抑制染色质凝缩可增强骨髓重建过程中“受刺激的” HSC的自我更新,但不能在较稳定的状态下进行稳态处理,从而引起部分表型去分化和相关水平的细胞凋亡造血分化两者合计,我们的研究表明,造血细胞的未分化状态具有独特的表观遗传学特征,其中包括动态染色质结构和与未分化水平相关的表观遗传学可塑性。

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