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全反式维甲酸治疗急性早幼粒细胞白血病的分子特征

Molecular signature of retinoic acid treatment in acute promyelocytic leukemia.

作者信息

Meani Natalia, Minardi Simone, Licciulli Silvia, Gelmetti Vania, Coco Francesco Lo, Nervi Clara, Pelicci Pier Giuseppe, Müller Heiko, Alcalay Myriam

机构信息

Institute of Molecular Oncology of the Italian Foundation for Cancer Research, Via Adamello 16, 20139 Milan, Italy.

出版信息

Oncogene. 2005 May 5;24(20):3358-68. doi: 10.1038/sj.onc.1208498.

Abstract

Acute promyelocytic leukemia (APL) is a distinct subtype of acute myeloid leukemia characterized by a block of differentiation at the promyelocytic stage. APL patients respond to pharmacological concentrations of all-trans retinoic acid (RA) and disease remission correlates with terminal differentiation of leukemic blasts. The PML/RAR oncogenic transcription factor is responsible for both the pathogenesis of APL and for its sensitivity to RA. In order to identify physiological targets of RA therapy, we analysed gene expression profiles of RA-treated APL blasts and found 1056 common target genes. Comparing these results to those obtained in RA-treated U937 cell lines revealed that transcriptional response to RA is largely dependent on the expression of PML/RAR. Several genes involved in the control of differentiation and stem cell renewal are early targets of RA regulation, and may be important effectors of RA response. Modulation of chromatin modifying genes was also observed, suggesting that specific structural changes in local chromatin domains may be required to promote RA-mediated differentiation. Computational analysis of upstream genomic regions in RA target genes revealed nonrandom distribution of transcription factor binding sites, indicating that specific transcriptional regulatory complexes may be involved in determining RA response.

摘要

急性早幼粒细胞白血病(APL)是急性髓系白血病的一种独特亚型,其特征是在早幼粒细胞阶段出现分化阻滞。APL患者对药理浓度的全反式维甲酸(RA)有反应,疾病缓解与白血病原始细胞的终末分化相关。PML/RAR致癌转录因子既负责APL的发病机制,也负责其对RA的敏感性。为了确定RA治疗的生理靶点,我们分析了RA处理的APL原始细胞的基因表达谱,发现了1056个共同的靶基因。将这些结果与在RA处理的U937细胞系中获得的结果进行比较,发现对RA的转录反应很大程度上依赖于PML/RAR的表达。几个参与分化控制和干细胞更新的基因是RA调控的早期靶点,可能是RA反应的重要效应器。还观察到染色质修饰基因的调节,这表明局部染色质结构域中特定的结构变化可能是促进RA介导的分化所必需的。对RA靶基因上游基因组区域的计算分析揭示了转录因子结合位点的非随机分布,表明特定的转录调节复合物可能参与决定RA反应。

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