Transcriptional and epigenetic regulation of the integrin collagen receptor locus ITGA1-PELO-ITGA2

Yann Cheli , Sachiko Kanaji , Beatrice Jacquelin , Mei Chang , Diane J. Nugent , Thomas J. Kunicki
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引用次数: 21

Abstract

The integrin collagen receptor locus on human chromosome 5q11.2 includes the integrin genes ITGA1 and ITGA2, and the cell cycle regulation gene PELO, embedded within ITGA1 intron 1. ITGA1 contains a CArG box that is bound by serum response factor (SRF), while PELO contains two Sp1 binding elements. A comparison of mRNA levels in megakaryocytic (MK) and non-megakaryocytic (non-MK) cell lines and an analysis of the transcriptional activity of promoter-LUC reporter gene constructs in transfected cells revealed that ITGA1 is selectively suppressed in the MK lineage. Sodium bisulfite genomic sequencing established that a CpG-rich ITGA1 promoter region (− 209/+ 115) is fully methylated at 19 CpG sites in MK cells that do not express α1β1, but completely demethylated in expressing cells. In vitro methylation of ITGA1 suppresses transcription, while treatment of megakaryocytic cells with 5-aza-2′-deoxycytidine, but not Trichostatin A, resulted in de novo expression of ITGA1. During thrombopoietin-induced in vitro differentiation of primary human cord blood mononuclear cells into megakaryocytes, we observed rapid, progressive CpG methylation of ITGA1, but not PELO or ITGA2. Thus, selective CpG methylation of the ITGA1 promoter is a specific feature of α1β1 regulation that coincides with the initiation of megakaryocyte differentiation.

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整合素胶原受体位点ITGA1-PELO-ITGA2的转录和表观遗传调控
人类染色体5q11.2上的整合素胶原受体位点包括整合素基因ITGA1和ITGA2,以及嵌入在ITGA1内含子1中的细胞周期调控基因PELO。ITGA1包含一个与血清反应因子(SRF)结合的CArG盒,而PELO包含两个Sp1结合元件。通过比较巨核细胞(MK)和非巨核细胞(non-MK)细胞系的mRNA水平,以及对转染细胞中启动子- luc报告基因构建的转录活性分析,发现ITGA1在MK谱系中被选择性抑制。亚硫酸氢钠基因组测序证实,在不表达α1β1的MK细胞中,一个富含CpG的ITGA1启动子区域(−209/+ 115)在19个CpG位点上完全甲基化,但在表达α1β1的细胞中完全去甲基化。体外ITGA1的甲基化抑制了转录,而用5-aza-2 ' -脱氧胞苷处理巨核细胞,而不使用曲古霉素A,导致ITGA1重新表达。在血小板生成素诱导的原代人脐带血单核细胞向巨核细胞的体外分化过程中,我们观察到ITGA1的CpG甲基化快速进展,但PELO和ITGA2没有甲基化。因此,ITGA1启动子的选择性CpG甲基化是α1β1调控的一个特定特征,与巨核细胞分化的开始相吻合。
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