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Distinct domains of erythroid Kruppel-like factor modulate chromatin remodeling and transactivation at the endogenous beta-globin gene promoter

机译:红细胞Kruppel样因子的不同域调节内源性β-珠蛋白基因启动子处的染色质重塑和反式激活

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摘要

Characterization of the mechanism(s) of action of trans-acting factors in higher eukaryotes requires the establishment of cellular models that test their function at endogenous target gene regulatory elements. Erythroid Kruppel-like factor (EKLF) is essential for beta -globin gene transcription. To elucidate the in vivo determinants leading to transcription of the adult beta -globin gene, functional domains of EKLF were examined in the context of chromatin remodeling and transcriptional activation at the endogenous locus. Human EKLF (hEKLF) sequences, linked to an estrogen-responsive domain, were studied with an erythroblast cell line lacking endogenous EKLF expression (J2e Delta eklf). J2e Delta eklf cells transduced with hEKLF demonstrated a dose-dependent rescue of beta -globin transcription in the presence of inducing ligand. Further analysis using a series of amino-terminal truncation mutants of hEKLF identified a distinct internal domain, which is sufficient for transactivation. Interestingly, studies of the chromatin structure of the beta -promoter revealed that a smaller carboxy-terminal domain generated an open promoter configuration. In vitro and in vivo binding studies demonstrated that this region interacted with BRG1, a component of the SWI/SNF chromatin remodeling complex. However, further study revealed that BRG1 interacted with an even smaller domain of EKLF, suggesting that additional protein interactions are required for chromatin remodeling at the endogenous beta -promoter. Taken together, our findings support a stepwise process of chromatin remodeling and coactivator recruitment to the beta -globin promoter in vivo. The J2e Delta eklf inducible hEKLF system will be a valuable tool for further characterizing the temporal series of events required for endogenous beta -globin gene transcription.
机译:表征高等真核生物中反式作用因子的作用机制需要建立细胞模型,以测试其在内源性靶基因调控元件上的功能。 Erythroid Kruppel样因子(EKLF)对于β-珠蛋白基因转录至关重要。为了阐明导致成人β-珠蛋白基因转录的体内决定簇,在染色质重塑和内源基因座转录激活的背景下,研究了EKLF的功能域。使用缺乏内源性EKLF表达的成红细胞细胞系(J2e Delta eklf)研究了与雌激素响应域连接的人EKLF(hEKLF)序列。用hEKLF转导的J2e Delta eklf细胞在诱导配体存在下表现出剂量依赖性的β-珠蛋白转录拯救。使用一系列hEKLF的氨基末端截短突变体进行进一步分析,确定了一个独特的内部结构域,足以进行反式激活。有趣的是,对β-启动子染色质结构的研究表明,较小的羧基末端结构域产生了开放的启动子构型。体外和体内结合研究表明,该区域与SWI / SNF染色质重塑复合物的组成部分BRG1相互作用。但是,进一步的研究表明,BRG1与甚至更小的EKLF结构域相互作用,表明内源β启动子上的染色质重塑需要额外的蛋白质相互作用。综上所述,我们的发现支持体内染色质重塑和共激活因子募集至β-珠蛋白启动子的逐步过程。 J2e Delta eklf诱导性hEKLF系统将是进一步表征内源性β-珠蛋白基因转录所需时间序列的有价值的工具。

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