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Epigenetic regulation by RAR alpha maintains ligand-independent transcriptional activity

机译:RAR alpha的表观遗传调控维持不依赖配体的转录活性

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Retinoic acid receptors (RARs) alpha, beta and gamma are key regulators of embryonic development. Hematopoietic differentiation is regulated by RAR alpha, and several types of leukemia show aberrant RAR alpha activity. Through microarray expression analysis, we identified transcripts differentially expressed between F9 wild-type (Wt) and RAR alpha knockout cells cultured in the absence or presence of the RAR-specific ligand all trans retinoic acid (RA). We validated the decreased Mest, Tex13, Gab1, Bcl11a, Tcfap2a and HMGcs1 transcript levels, and increased Slc38a4, Stmn2, RpL39l, Ref2L, Mobp and Rlf1 transcript levels in the RAR alpha knockout cells. The decreased Mest and Tex13 transcript levels were associated with increased promoter CpG-island methylation and increased repressive histone modifications (H3K9me3) in RAR alpha knockout cells. Increased Slc38a4 and Stmn2 transcript levels were associated with decreased promoter CpG-island methylation and increased permissive histone modifications (H3K9/K14ac, H3K4me3) in RAR alpha knockout cells. We demonstrated specific association of RAR alpha and RXR alpha with the Mest promoter. Importantly, stable expression of a dominant negative, oncogenic PML-RAR alpha fusion protein in F9 Wt cells recapitulated the decreased Mest transcript levels observed in RAR alpha knockout cells. We propose that RAR alpha plays an important role in cellular memory and imprinting by regulating the CpG methylation status of specific promoter regions.
机译:维甲酸受体(RAR)的α,β和γ是胚胎发育的关键调节因子。造血分化受RAR alpha调节,几种类型的白血病显示异常的RAR alpha活性。通过微阵列表达分析,我们确定了在不存在或存在全反式维甲酸(RA)的RAR特异性配体的情况下培养的F9野生型(Wt)和RAR alpha基因敲除细胞之间差异表达的转录本。我们验证了RAR alpha基因敲除细胞中Mest,Tex13,Gab1,Bcl11a,Tcfap2a和HMGcs1转录水平的降低,以及Slc38a4,Stmn2,RpL391,Ref2L,Mobp和Rlf1转录水平的升高。减少的Mest和Tex13转录水平与RAR alpha基因敲除细胞中启动子CpG-岛甲基化增加和抑制性组蛋白修饰(H3K9me3)增加相关。 SAR38a4和Stmn2转录水平的增加与RAR alpha基因敲除细胞中启动子CpG-岛甲基化的减少和许可组蛋白修饰的增加(H3K9 / K14ac,H3K4me3)有关。我们展示了RAR alpha和RXR alpha与Mest启动子的特定关联。重要的是,在F9 Wt细胞中显性阴性,致癌性PML-RARα融合蛋白的稳定表达概括了在RARα基因敲除细胞中观察到的Mest转录水平下降。我们建议RAR alpha通过调节特定启动子区域的CpG甲基化状态在细胞记忆和印迹中起重要作用。

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