Shyu Yu-Chiau, Wen Shau-Ching, Lee Tung-Liang, Chen Xin, Hsu Chia-Tse, Chen Hsin, Chen Ruei-Lin, Hwang Jau-Lang, Shen Che-Kun James
Institute of Molecular Biology, Academia Sinica, Nankang, Taipei 115.
Cell Res. 2006 Apr;16(4):347-55. doi: 10.1038/sj.cr.7310045.
EKLF is an erythroid-specific, zinc finger-containing transcription factor essential for the activation of the mammalian beta globin gene in erythroid cells of definitive lineage. We have prepared a polyclonal anti-mouse EKLF antibody suitable for Western blotting and immunoprecipitation (IP) qualities, and used it to define the expression patterns of the EKLF protein during mouse erythroid development. We have also used this antibody for the chromatin-immunoprecipitation (ChIP) assay. EKLF was found to bind in vivo at both the mouse beta-major-globin promoter and the HS2 site of beta-LCR in the mouse erythroleukemia cells (MEL) in a DMSO-inducible manner. The DMSO-induced bindings of EKLF as well as three other proteins, namely, RNA polymerase II, acetylated histone H3, and methylated histone H3, were not abolished but significantly lowered in CB3, a MEL-derived cell line with null-expression of p45/NF-E2, an erythroid-enriched factor needed for activation of the mammalian globin loci. Interestingly, binding of EKLF in vivo was also detected in the mouse alpha-like globin locus, at the adult alpha globin promoter and its far upstream regulatory element alpha-MRE (HS26). This study provides direct evidence for EKLF-binding in vivo at the major regulatory elements of the mouse beta-like globin gene clusters the data also have interesting implications with respect to the role of EKLF-chromatin interaction in mammalian globin gene regulation.
EKLF是一种红细胞特异性的含锌指转录因子,对于在确定谱系的红细胞中激活哺乳动物β珠蛋白基因至关重要。我们制备了一种适用于蛋白质免疫印迹和免疫沉淀(IP)的多克隆抗小鼠EKLF抗体,并用它来确定EKLF蛋白在小鼠红细胞发育过程中的表达模式。我们还将该抗体用于染色质免疫沉淀(ChIP)分析。发现EKLF在小鼠红白血病细胞(MEL)中以二甲基亚砜(DMSO)诱导的方式在体内结合于小鼠β-珠蛋白主要启动子和β-基因座控制区(β-LCR)的HS2位点。在CB3(一种源自MEL的细胞系,其p45/NF-E2表达缺失,p45/NF-E2是激活哺乳动物珠蛋白基因座所需的富含红细胞的因子)中,EKLF以及其他三种蛋白质(即RNA聚合酶II、乙酰化组蛋白H3和甲基化组蛋白H3)的DMSO诱导结合并未消除,但显著降低。有趣的是,在小鼠α-珠蛋白基因座、成年α珠蛋白启动子及其远上游调控元件α-MRE(HS26)中也检测到了EKLF在体内的结合。这项研究为EKLF在体内结合于小鼠β-珠蛋白基因簇的主要调控元件提供了直接证据,这些数据对于EKLF-染色质相互作用在哺乳动物珠蛋白基因调控中的作用也具有有趣的启示。