Wijgerde M, Gribnau J, Trimborn T, Nuez B, Philipsen S, Grosveld F, Fraser P
Medical Genetics Center Department of Cell Biology and Genetics, Erasmus University Rotterdam, The Netherlands.
Genes Dev. 1996 Nov 15;10(22):2894-902. doi: 10.1101/gad.10.22.2894.
We have investigated the role of erythroid Kruppel-like factor (EKLF) in expression of the human beta-globin genes in compound EKLF knockout/human beta-locus transgenic mice. EKLF affects only the adult mouse beta-globin genes in homozygous knockout mice; heterozygous mice are unaffected. Here we show that EKLF knockout mice express the human epsilon and gamma-globin genes normally in embryonic red cells. However, fetal liver erythropoiesis, which is marked by a period of gamma- and beta-gene competition in which the genes are alternately transcribed, exhibits an altered ratio of gamma- to beta-gene transcription. EKLF heterozygous fetal livers display a decrease in the number of transcriptionally active beta genes with a reciprocal increase in the number of transcriptionally active gamma genes. beta-Gene transcription is absent in homozygous knockout fetuses with coincident changes in chromatin structure at the beta promoter. There is a further increase in the number of transcriptionally active gamma genes and accompanying gamma gene promoter chromatin alterations. These results indicate that EKLF plays a major role in gamma- and beta-gene competition and suggest that EKLF is important in stabilizing the interaction between the Locus Control Region and the beta-globin gene. In addition, these findings provide further evidence that developmental modulation of globin gene expression within individual cells is accomplished by altering the frequency and/or duration of transcriptional periods of a gene rather than changing the rate of transcription.
我们研究了红系Kruppel样因子(EKLF)在复合EKLF基因敲除/人β-珠蛋白基因座转基因小鼠中人类β-珠蛋白基因表达中的作用。在纯合基因敲除小鼠中,EKLF仅影响成年小鼠的β-珠蛋白基因;杂合小鼠不受影响。在此我们表明,EKLF基因敲除小鼠在胚胎红细胞中正常表达人类ε和γ-珠蛋白基因。然而,以γ-和β-基因竞争期为特征的胎儿肝脏红细胞生成过程中,γ-和β-基因交替转录,γ-与β-基因转录的比例发生了改变。EKLF杂合子胎儿肝脏中转录活性β基因的数量减少,而转录活性γ基因的数量相应增加。在纯合基因敲除胎儿中β-基因转录缺失,同时β启动子处的染色质结构发生改变。转录活性γ基因的数量进一步增加,并伴有γ基因启动子染色质改变。这些结果表明,EKLF在γ-和β-基因竞争中起主要作用,并提示EKLF在稳定基因座控制区与β-珠蛋白基因之间的相互作用中很重要。此外,这些发现进一步证明,单个细胞内珠蛋白基因表达的发育调控是通过改变基因转录期的频率和/或持续时间来实现的,而不是通过改变转录速率。