首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Genomic impact of transient low-dose decitabine treatment on primary AML cells.
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Genomic impact of transient low-dose decitabine treatment on primary AML cells.

机译:短暂低剂量地西他滨治疗对原代AML细胞的基因组影响。

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摘要

Acute myeloid leukemia (AML) is characterized by dysregulated gene expression and abnormal patterns of DNA methylation; the relationship between these events is unclear. Many AML patients are now being treated with hypomethylating agents, such as decitabine (DAC), although the mechanisms by which it induces remissions remain unknown. The goal of this study was to use a novel stromal coculture assay that can expand primary AML cells to identify the immediate changes induced by DAC with a dose (100nM) that decreases total 5-methylcytosine content and reactivates imprinted genes (without causing myeloid differentiation, which would confound downstream genomic analyses). Using array-based technologies, we found that DAC treatment caused global hypomethylation in all samples (with a preference for regions with higher levels of baseline methylation), yet there was limited correlation between changes in methylation and gene expression. Moreover, the patterns of methylation and gene expression across the samples were primarily determined by the intrinsic properties of the primary cells, rather than DAC treatment. Although DAC induces hypomethylation, we could not identify canonical target genes that are altered by DAC in primary AML cells, suggesting that the mechanism of action of DAC is more complex than previously recognized.
机译:急性髓细胞性白血病(AML)的特征是基因表达失调和DNA甲基化异常。这些事件之间的关系尚不清楚。现在,许多AML患者正在接受次甲基化剂(例如地西他滨(DAC))的治疗,尽管其诱导缓解的机制仍不清楚。这项研究的目的是使用一种新颖的基质共培养测定法,该测定法可以扩增原代AML细胞,从而以降低总5-甲基胞嘧啶含量并激活印迹基因的剂量(100nM)识别DAC诱导的立即变化(不引起髓样分化,这会混淆下游的基因组分析)。使用基于阵列的技术,我们发现DAC处理在所有样品中引起了总体的低甲基化(优先选择基线甲基化水平较高的区域),但是甲基化变化与基因表达之间的相关性有限。此外,样品中甲基化和基因表达的模式主要由原代细胞的固有特性决定,而不是由DAC处理决定。尽管DAC会诱导甲基化不足,但我们无法鉴定出在原代AML细胞中被DAC改变的经典靶基因,这表明DAC的作用机制比以前公认的更为复杂。

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