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Wnt signaling pathway is epigenetically regulated by methylation of Wnt antagonists in acute myeloid leukemia

机译:WNT信号通路通过急性髓性白血病中Wnt拮抗剂的甲基化进行表现出来。

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Activation of the Wnt signaling pathway has been implicated recently in the pathogenesis of leukemia. We studied the function of epigenetic regulation of the Wnt pathway and its prognostic relevance in acute myelogenous leukemia (AML). We used a methylation-specific polymerase chain reaction approach to analyze the promoter methylation status of a panel of Wnt antagonists including sFRP1, sFRP2, sFRP4, sFRP5, DKK1 and DKK3. Aberrant methylation of Wnt antagonists was detected in four AML cell lines and in up to 64% of AML marrow samples. Treatment of the cell lines with 5-aza-2'-deoxycytidine induced reexpression of methylated Wnt antagonists and inactivation of the Wnt pathway by downregulating the Wnt pathway genes cyclin D1, TCF1 and LEF1 and reducing nuclear localization of -catenin. In a subgroup of patients 60 years and younger with newly diagnosed AML and intermediate-risk cytogenetics, abnormal methylation of Wnt antagonists was associated with decreased 4-year relapse-free survival (28 vs 61%, respectively, P=0.03). Our results indicate a function of the epigenetic regulation of the Wnt pathway in predicting relapse in a subgroup of AML patients.
机译:最近在白血病发病机制中涉及WNT信号传导途径的激活。我们研究了急性髓性白血病(AML)中对脑病途径的介入调控及其预后相关性的作用。我们使用甲基化特异性聚合酶链反应方法来分析WNT拮抗剂面板的启动子甲基化状态,包括SFRP1,SFRP2,SFRP4,SFRP5,DKK1和DKK3。在四个AML细胞系中检测到WNT拮抗剂的异常甲基化,并且在最多64℃的AML骨髓样品中检测。用5-AZA-2'-脱氧胞苷诱导甲基化WNT拮抗剂的细胞系对细胞系进行治疗,通过下调WNT途径基因Cyclin D1,TCF1和LEF1并降低-Catenin的核定位来灭活Wnt途径的灭活。在患者的亚组60岁和新诊断的AML和中生细胞遗传学中,WNT拮抗剂的异常甲基化与4年的复发存活率下降有关(分别为28 Vs 61 %,P = 0.03)。我们的结果表明,在AML患者亚组中预测复发中的WNT途径的表观遗传调节功能。

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