Zhou Dewang, Pawlik Kevin M, Ren Jinxiang, Sun Chiao-Wang, Townes Tim M
Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham, School of Medicine, Birmingham, Alabama 35294, USA.
J Biol Chem. 2006 Jun 9;281(23):16052-7. doi: 10.1074/jbc.M601182200. Epub 2006 Apr 10.
The competition model for beta-like globin gene switching during development predicts that differential binding of transcription factors to globin gene promoters and/or proximal enhancers regulate the competitive interactions of globin gene family members with the powerful locus control region (LCR). Direct interactions of individual genes with the LCR are essential for high level expression in erythroid cells. In this paper, we have demonstrated, by chromatin immunoprecipitation, that erythroid-Krupple-like factor (EKLF) binds to embryonic/fetal globin gene promoters in primitive (but not in definitive) erythroid cells. EKLF binds strongly to adult globin gene promoters and to LCR sequences HS4, HS3, HS2, and HS1 in both primitive and definitive erythroid cells. Trimethylation of histone H3K4 and H3K27 at the embryonic/fetal and adult globin gene promoters is equivalent in definitive cells; therefore, the differential binding of EKLF to these promoters does not appear to result from changes in chromatin configuration. Interestingly, the level of EKLF in definitive cells is 3-fold higher than the level in primitive cells. These results suggest that temporal-specific changes in EKLF abundance result in differential binding of this essential erythroid transcription factor to embryonic/fetal globin gene promoters during development and that these changes in EKLF binding specificity mediate the competitive interactions of globin gene family members with the LCR.
发育过程中类β珠蛋白基因转换的竞争模型预测,转录因子与珠蛋白基因启动子和/或近端增强子的差异结合调控着珠蛋白基因家族成员与强大的基因座控制区(LCR)之间的竞争相互作用。单个基因与LCR的直接相互作用对于红系细胞中的高水平表达至关重要。在本文中,我们通过染色质免疫沉淀证明,红系Krupple样因子(EKLF)在原始(而非定型)红系细胞中与胚胎/胎儿珠蛋白基因启动子结合。在原始和定型红系细胞中,EKLF都强烈结合于成人珠蛋白基因启动子以及LCR序列HS4、HS3、HS2和HS1。在定型细胞中,胚胎/胎儿和成人珠蛋白基因启动子处的组蛋白H3K4和H3K27的三甲基化水平相当;因此,EKLF与这些启动子的差异结合似乎并非由染色质构型的变化所致。有趣的是,定型细胞中EKLF的水平比原始细胞中的水平高3倍。这些结果表明,EKLF丰度的时间特异性变化导致了这种必需的红系转录因子在发育过程中与胚胎/胎儿珠蛋白基因启动子的差异结合,并且EKLF结合特异性的这些变化介导了珠蛋白基因家族成员与LCR之间的竞争相互作用。