Tewari R, Gillemans N, Wijgerde M, Nuez B, von Lindern M, Grosveld F, Philipsen S
Sars International Centre for Molecular Marine Biology, Bergen High Technology Centre, Thormohlensgt. 55, N-5020 Bergen, Norway.
EMBO J. 1998 Apr 15;17(8):2334-41. doi: 10.1093/emboj/17.8.2334.
Disruption of the gene for transcription factor EKLF (erythroid Krüppel-like factor) results in fatal anaemia caused by severely reduced expression of the adult beta-globin gene, while other erythroid-specific genes, including the embryonic epsilon- and fetal gamma-globin genes, are expressed normally. Thus, EKLF is thought to be a stage-specific factor acting through the CACC box in the beta-gene promoter, even though it is already present in embryonic red cells. Here, we show that a beta-globin gene linked directly to the locus control region (LCR) is expressed at embryonic stages, and that this is only modestly reduced in EKLF-/- embryos. Thus, embryonic beta-globin expression is not intrinsically dependent on EKLF. To investigate whether EKLF functions in the locus control region, we analysed the expression of LCR-driven lacZ reporters. This shows that EKLF is not required for reporter activation by the complete LCR. However, embryonic expression of reporters driven by 5'HS3 of the LCR requires EKLF. This suggests that EKLF interacts directly with the CACC motifs in 5'HS3 and demonstrates that EKLF is also a transcriptional activator in embryonic erythropoiesis. Finally, we show that overexpression of EKLF results in an earlier switch from gamma- to beta-globin expression. Adult mice with the EKLF transgene have reduced platelet counts, suggesting that EKLF levels affect the balance between the megakaryocytic and erythroid lineages. Interestingly, the EKLF transgene rescues the lethal phenotype of EKLF null mice, setting the stage for future studies aimed at the analysis of the EKLF protein and its role in beta-globin gene activation.
转录因子EKLF(红系Krüppel样因子)基因的破坏会导致严重贫血,这是由于成人β-珠蛋白基因的表达严重降低所致,而其他红系特异性基因,包括胚胎期的ε-珠蛋白基因和胎儿期的γ-珠蛋白基因,则正常表达。因此,尽管EKLF在胚胎红细胞中就已存在,但它被认为是一种通过β-基因启动子中的CACC盒起作用的阶段特异性因子。在这里,我们表明,直接与基因座控制区(LCR)相连的β-珠蛋白基因在胚胎期表达,并且在EKLF基因敲除胚胎中只是略有降低。因此,胚胎期β-珠蛋白的表达并非内在地依赖于EKLF。为了研究EKLF是否在基因座控制区发挥作用,我们分析了LCR驱动的lacZ报告基因的表达。这表明完整的LCR激活报告基因并不需要EKLF。然而,由LCR的5'HS3驱动的报告基因的胚胎期表达需要EKLF。这表明EKLF直接与5'HS3中的CACC基序相互作用,并证明EKLF在胚胎红细胞生成中也是一种转录激活因子。最后,我们表明EKLF的过表达导致从γ-珠蛋白表达向β-珠蛋白表达的转换提前。携带EKLF转基因的成年小鼠血小板计数降低,这表明EKLF水平影响巨核细胞系和红系之间的平衡。有趣的是,EKLF转基因挽救了EKLF基因敲除小鼠的致死表型,为未来旨在分析EKLF蛋白及其在β-珠蛋白基因激活中的作用的研究奠定了基础。