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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Genome-wide analysis of histone H3 acetylation patterns in AML identifies PRDX2 as an epigenetically silenced tumor suppressor gene
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Genome-wide analysis of histone H3 acetylation patterns in AML identifies PRDX2 as an epigenetically silenced tumor suppressor gene

机译:AML中组蛋白H3乙酰化模式的全基因组分析确定PRDX2为表观遗传沉默的抑癌基因

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摘要

With the use of ChIP on microarray assays in primary leukemia samples, we report that acute myeloid leukemia (AML) blasts exhibit significant alterations in histone H3 acetylation (H3Ac) levels at 1000 genomic loci compared with CD34 + progenitor cells. Importantly, core promoter regions tended to have lower H3Ac levels in AML compared with progenitor cells, which suggested that a large number of genes are epigenetically silenced in AML. Intriguingly, we identified peroxiredoxin 2 (PRDX2) as a novel potential tumor suppressor gene in AML. H3Ac was decreased at the PRDX2 gene promoter in AML, which correlated with low mRNA and protein expression. We also observed DNA hypermethylation at the PRDX2 promoter in AML. Low protein expression of the antioxidant PRDX2 gene was clinically associated with poor prognosis in patients with AML. Functionally, PRDX2 acted as inhibitor of myeloid cell growth by reducing levels of reactive oxygen species (ROS) generated in response to cytokines. Forced PRDX2 expression inhibited c-Myc-induced leukemogenesis in vivo on BM transplantation in mice. Taken together, epigenome-wide analyses of H3Ac in AML led to the identification of PRDX2 as an epigenetically silenced growth suppressor, suggesting a possible role of ROS in the malignant phenotype in AML.
机译:通过在原发性白血病样本的微阵列分析中使用ChIP,我们报道与CD34 +祖细胞相比,急性髓样白血病(AML)原始细胞在> 1000个基因组位点处显示出组蛋白H3乙酰化(H3Ac)水平的显着变化。重要的是,与祖细胞相比,AML中的核心启动子区域倾向于具有较低的H3Ac水平,这表明在AML中表观遗传上沉默了许多基因。有趣的是,我们确定过氧化物酶2(PRDX2)是AML中潜在的新型抑癌基因。 H3Ac在AML的PRDX2基因启动子处降低,这与低mRNA和蛋白质表达相关。我们还观察到在AML中PRDX2启动子的DNA超甲基化。抗氧化剂PRDX2基因的低蛋白表达与AML患者的预后不良有关。在功能上,PRDX2通过降低响应细胞因子而产生的活性氧(ROS)的水平来充当骨髓细胞生长的抑制剂。强制PRDX2表达抑制小鼠BM移植体内c-Myc诱导的白血病发生。综上所述,AML中H3Ac的表观基因组范围分析导致PRDX2被鉴定为表观遗传学上沉默的生长抑制剂,提示ROS在AML恶性表型中可能发挥作用。

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