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骨髓增生异常综合征造血祖细胞在体外谱系特异性分化过程中的DNA甲基化谱分析。

DNA methylation profiling of myelodysplastic syndrome hematopoietic progenitor cells during in vitro lineage-specific differentiation.

作者信息

Hopfer Olaf, Komor Martina, Koehler Ina Sabine, Schulze Matthias, Hoelzer Dieter, Thiel Eckhard, Hofmann Wolf-Karsten

机构信息

Department of Hematology, Oncology and Transfusion Medicine, Charité, Campus Benjamin Franklin, Berlin, Germany.

出版信息

Exp Hematol. 2007 May;35(5):712-23. doi: 10.1016/j.exphem.2007.01.054.

Abstract

Deregulated epigenetic mechanisms are likely involved in the pathogenesis of myelodysplastic syndromes (MDSs). Which genes are silenced by aberrant promotor methylation during MDS hematopoiesis has not been equivalently investigated. Using an in vitro differentiation model of human hematopoiesis, we generated defined differentiation stages (day 0, day 4, day 7, day 11) of erythro-, thrombo- and granulopoiesis from 13 MDS patients and seven healthy donors. Promotor methylation analysis of key regulatory genes involved in cell cycle control (p14, p15, p16, CHK2), DNA repair (hMLH1), apoptosis (p73, survivin, DAPK), and differentiation (RARb, WT1) was performed by methylation-specific polymerase chain reaction. Corresponding gene expression was analyzed by microarray (Affymetrix, HG-U133A). We provide evidence that p16, survivin, CHK2, and WT1 are affected by promotor hypermethylation in MDSs displaying a selective International Prognostic Scoring System risk association. A methylation-associated mRNA downregulation for specific hematopoietic lineages and differentiation stages is demonstrated for survivin, CHK2, and WT1. We identified a suppressed survivin mRNA expression in methylated samples during erythropoiesis, whereas WT1 and CHK2 methylation-related reduction of mRNA expression was found during granulopoiesis in all MDS risk types. Our data suggest that lineage-specific methylation-associated gene silencing of survivin, CHK2, and WT1 in MDS hematopoietic precursor cells may contribute to the MDS-specific phenotype

摘要

失调的表观遗传机制可能参与了骨髓增生异常综合征(MDS)的发病过程。在MDS造血过程中,哪些基因因异常启动子甲基化而沉默尚未得到同等程度的研究。利用人类造血的体外分化模型,我们从13例MDS患者和7名健康供体中生成了红系、巨核系和粒系造血的特定分化阶段(第0天、第4天、第7天、第11天)。通过甲基化特异性聚合酶链反应对参与细胞周期调控(p14、p15、p16、CHK2)、DNA修复(hMLH1)、细胞凋亡(p73、survivin、DAPK)和分化(RARb、WT1)的关键调控基因进行启动子甲基化分析。通过微阵列(Affymetrix,HG-U133A)分析相应的基因表达。我们提供的证据表明,在显示选择性国际预后评分系统风险关联的MDS中,p16、survivin、CHK2和WT1受启动子高甲基化影响。survivin、CHK2和WT1在特定造血谱系和分化阶段存在甲基化相关的mRNA下调。我们发现在红系造血过程中,甲基化样本中survivin mRNA表达受到抑制,而在所有MDS风险类型的粒系造血过程中均发现WT1和CHK2甲基化相关的mRNA表达降低。我们的数据表明,MDS造血前体细胞中survivin、CHK2和WT1的谱系特异性甲基化相关基因沉默可能导致MDS特异性表型

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