Gardiner M R, Gongora M M, Grimmond S M, Perkins A C
Institute for Molecular Bioscience, University of Queensland, Australia.
Mech Dev. 2007 Sep-Oct;124(9-10):762-74. doi: 10.1016/j.mod.2007.06.005. Epub 2007 Jun 23.
There are two waves of erythropoiesis, known as primitive and definitive waves in mammals and lower vertebrates including zebrafish. The founding member of the Kruppel-like factor (KLF) family of CACCC-box binding proteins, EKLF/Klf1, is essential for definitive erythropoiesis in mammals but only plays a minor role in primitive erythropoiesis. Morpholino knockdown experiments have shown a role for zebrafish klf4 in primitive erythropoiesis and hatching gland formation. In order to generate a global understanding of how klf4 might influence gene expression and differentiation, we have performed expression profiling of klf4 morphants, and then performed validation of many putative target genes by qRT-PCR and whole mount in situ hybridization. We found a critical role for klf4 in embryonic globin, heme synthesis and hatching gland gene expression. In contrast, there was an increase in expression of definitive hematopoietic specific genes such as larval globin genes, runx1 and c-myb from 24 hpf, suggesting a selective role for klf4 in primitive rather than definitive erythropoiesis. In addition, we show klf4 preferentially binds CACCC box elements in the primitive zebrafish beta-like globin gene promoters. These results have global implications for primitive erythroid gene regulation by KLF-CACCC box interactions.
在包括斑马鱼在内的哺乳动物和低等脊椎动物中,存在两波红细胞生成过程,分别称为原始波和定型波。Kruppel样因子(KLF)家族中与CACCC盒结合蛋白相关的首个成员EKLF/Klf1,对哺乳动物的定型红细胞生成至关重要,但在原始红细胞生成中仅起次要作用。吗啉代敲低实验表明,斑马鱼klf4在原始红细胞生成和孵化腺形成中发挥作用。为了全面了解klf4如何影响基因表达和分化,我们对klf4 morphants进行了表达谱分析,然后通过qRT-PCR和全胚胎原位杂交对许多假定的靶基因进行了验证。我们发现klf4在胚胎珠蛋白、血红素合成和孵化腺基因表达中起关键作用。相反,从24 hpf起,定型造血特异性基因如幼虫珠蛋白基因、runx1和c-myb的表达增加,这表明klf4在原始而非定型红细胞生成中起选择性作用。此外,我们发现klf4优先结合原始斑马鱼β样珠蛋白基因启动子中的CACCC盒元件。这些结果对通过KLF-CACCC盒相互作用进行的原始红细胞基因调控具有全面影响。