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Epigenetic remodeling in B-cell acute lymphoblastic leukemia occurs in two tracks and employs embryonic stem cell-like signatures

机译:B细胞急性淋巴细胞白血病的表观遗传重塑发生在两个轨迹中,并采用了胚胎干细胞样特征

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摘要

We investigated DNA methylomes of pediatric B-cell acute lymphoblastic leukemias (B-ALLs) using whole-genome bisulfite sequencing and high-definition microarrays, along with RNA expression profiles. Epigenetic alteration of B-ALLs occurred in two tracks: de novo methylation of small functional compartments and demethylation of large inter-compartmental backbones. The deviations were exaggerated in lamina-associated domains, with differences corresponding to methylation clusters and/or cytogenetic groups. Our data also suggested a pivotal role of polycomb and CTBP2 in de novo methylation, which may be traced back to bivalency status of embryonic stem cells. Driven by these potent epigenetic modulations, suppression of polycomb target genes was observed along with disruption of developmental fate and cell cycle and mismatch repair pathways and altered activities of key upstream regulators.
机译:我们使用全基因组亚硫酸氢盐测序和高清微阵列,以及RNA表达谱,研究了小儿B细胞急性淋巴细胞白血病(B-ALL)的DNA甲基化组。 B-ALLs的表观遗传学改变发生在两个轨迹上:小功能区的从头甲基化和大区室间主链的脱甲基。在层状相关区域中偏差被夸大,差异对应于甲基化簇和/或细胞遗传学组。我们的数据还表明,polycomb和CTBP2在从头甲基化中起关键作用,这可以追溯到胚胎干细胞的双价状态。在这些有效的表观遗传调控的驱动下,人们观察到了对多梳靶基因的抑制,以及发育命运和细胞周期的破坏,错配修复途径以及关键上游调节子的活性改变。

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