Yet S F, McA'Nulty M M, Folta S C, Yen H W, Yoshizumi M, Hsieh C M, Layne M D, Chin M T, Wang H, Perrella M A, Jain M K, Lee M E
Cardiovascular Biology Laboratory, Harvard School of Public Health, Boston, Massachusetts 02115, USA.
J Biol Chem. 1998 Jan 9;273(2):1026-31. doi: 10.1074/jbc.273.2.1026.
Members of the erythroid Krüppel-like factor (EKLF) multigene family contain three C-terminal zinc fingers, and they are typically expressed in a limited number of tissues. EKLF, the founding member, transactivates the beta-globin promoter by binding to the CACCC motif. EKLF is essential for expression of the beta-globin gene as demonstrated by gene deletion experiments in mice. Using a DNA probe from the zinc finger region of EKLF, we cloned a cDNA encoding a member of this family from a human vascular endothelial cell cDNA library. Sequence analysis indicated that our clone, hEZF, is the human homologue of the recently reported mouse EZF and GKLF. hEZF is a single-copy gene that maps to chromosome 9q31. By gel mobility shift analysis, purified recombinant hEZF protein bound specifically to a probe containing the CACCC core sequence. In co-transfection experiments, we found that sense but not antisense hEZF decreased the activity of a reporter plasmid containing the CACCC sequence upstream of the thymidine kinase promoter by 6-fold. In contrast, EKLF increased the activity of the reporter plasmid by 3-fold. By fusing hEZF to the DNA-binding domain of GAL4, we mapped a repression domain in hEZF to amino acids 181-388. We also found that amino acids 91-117 of hEZF confer an activation function on the GAL4 DNA-binding domain.
红系Krüppel样因子(EKLF)多基因家族的成员含有三个C端锌指结构,且通常在有限数量的组织中表达。该家族的创始成员EKLF通过与CACCC基序结合来反式激活β-珠蛋白启动子。基因敲除实验表明,EKLF对β-珠蛋白基因的表达至关重要。我们使用来自EKLF锌指区域的DNA探针,从人血管内皮细胞cDNA文库中克隆了一个编码该家族成员的cDNA。序列分析表明,我们克隆的hEZF是最近报道的小鼠EZF和GKLF的人类同源物。hEZF是一个单拷贝基因,定位于9号染色体q31区域。通过凝胶迁移率变动分析,纯化的重组hEZF蛋白特异性结合含有CACCC核心序列的探针。在共转染实验中,我们发现正义而非反义hEZF使含有胸苷激酶启动子上游CACCC序列的报告质粒活性降低了6倍。相反,EKLF使报告质粒活性增加了3倍。通过将hEZF与GAL4的DNA结合结构域融合,我们将hEZF中的一个抑制结构域定位到第181 - 388位氨基酸。我们还发现hEZF的第91 - 117位氨基酸赋予了GAL4 DNA结合结构域激活功能。