Department of Experimental Medicine, University of Rome, Sapienza, Italy.
Oncogenomic and Epigenetic Unit, Regina Elena National Cancer Institute, Rome, Italy.
FEBS J. 2020 Mar;287(6):1155-1175. doi: 10.1111/febs.15086. Epub 2019 Oct 23.
The 'instructive model' of aberrant DNA methylation in human tumors is based on the observation that CpG islands prone to hypermethylation in cancers are embedded in chromatin enriched in H3K27me3 in human embryonic stem cells (hESC). Recent studies also link methylation of CpG islands to the methylation status of H3K4, where H3K4me3 is inversely correlated with DNA methylation. To provide insight into these conflicting findings, we generated DNA methylation profiles for acute myeloid leukemia samples from patients and leukemic cell lines and integrated them with publicly available ChIp-seq data, containing H3K4me3 and H3K27me3 CpG island occupation in hESC, or hematopoietic stem or progenitor cells (hHSC/MPP). Hypermethylated CpG islands in AML samples displayed H3K27me3 enrichments in hESC and hHSC/MPP; however, ChIp analysis of specific hypermethylated CpG islands revealed a significant reduction in H3K4me3 signal with a concomitant increase in H3K4me0 levels as opposed to a nonsignificant increase in H3K27me3 marks. The integration of AML DNA methylation profiles with the ChIp-seq data in hESC and hHSC/MPP also led to the identification of Iroquois homeobox 2 (IRX2) as a previously unknown factor promoting differentiation of leukemic cells. Our results indicate that in contrast to the 'instructive model', H3K4me3 levels are strongly associated with DNA methylation patterns in AML and have a role in the regulation of critical genes, such as the putative tumor suppressor IRX2.
人类肿瘤中异常 DNA 甲基化的“指导性模型”基于这样的观察结果:在癌症中易发生过度甲基化的 CpG 岛在人类胚胎干细胞(hESC)中富含 H3K27me3 的染色质中。最近的研究还将 CpG 岛的甲基化与 H3K4 的甲基化状态联系起来,其中 H3K4me3 与 DNA 甲基化呈负相关。为了深入了解这些相互矛盾的发现,我们生成了来自患者和白血病细胞系的急性髓细胞白血病样本的 DNA 甲基化图谱,并将其与公共可用的 ChIp-seq 数据进行整合,其中包含 hESC 中 H3K4me3 和 H3K27me3 CpG 岛占据,或造血干细胞或祖细胞(hHSC/MPP)。AML 样本中的高甲基化 CpG 岛在 hESC 和 hHSC/MPP 中显示出 H3K27me3 富集;然而,对特定高甲基化 CpG 岛的 ChIp 分析显示 H3K4me3 信号显著减少,同时 H3K4me0 水平增加,而 H3K27me3 标记则没有显著增加。AML DNA 甲基化图谱与 hESC 和 hHSC/MPP 中的 ChIp-seq 数据的整合还导致鉴定出 Iroquois 同源盒 2(IRX2)作为先前未知的促进白血病细胞分化的因素。我们的研究结果表明,与“指导性模型”相反,H3K4me3 水平与 AML 中的 DNA 甲基化模式密切相关,并在调节关键基因(如假定的肿瘤抑制因子 IRX2)方面发挥作用。