Zheng Jie, Kitajima Kenji, Sakai Eiko, Kimura Tohru, Minegishi Naoko, Yamamoto Masayuki, Nakano Toru
Department of Pathology, Medical School and Graduate School of Frontier Biosciences, Osaka University, Yamada-oka 2-2, Suita, Osaka 565-0871, Japan.
Blood. 2006 Jan 15;107(2):520-7. doi: 10.1182/blood-2005-04-1385. Epub 2005 Sep 20.
The zinc finger transcription factor GATA-1 is essential for both primitive (embryonic) and definitive (adult) erythropoiesis. To define the roles of GATA-1 in the production and differentiation of primitive and definitive erythrocytes, we established GATA-1-null embryonic stem cell lines in which GATA-1 was able to be conditionally expressed by using the tetracycline conditional gene expression system. The cells were subjected to hematopoietic differentiation by coculturing on OP9 stroma cells. We expressed GATA-1 in the course of primitive and definitive erythropoiesis and analyzed the ability of GATA-1 to rescue the defective erythropoiesis caused by the GATA-1 null mutation. Our results show that GATA-1 functions in the proliferation and maturation of erythrocytes in a distinctive manner. The early-stage expression of GATA-1 during both primitive and definitive erythropoiesis was sufficient to promote the proliferation of red blood cells. In contrast, the late-stage expression of GATA-1 was indispensable to the terminal differentiation of primitive and definitive erythrocytes. Thus, GATA-1 affects the proliferation and differentiation of erythrocytes by different mechanisms.
锌指转录因子GATA-1对于原始(胚胎期)和终末(成年期)红细胞生成均至关重要。为了明确GATA-1在原始和终末红细胞产生及分化中的作用,我们建立了GATA-1基因缺失的胚胎干细胞系,利用四环素条件基因表达系统使其能够条件性表达GATA-1。通过与OP9基质细胞共培养使这些细胞进行造血分化。我们在原始和终末红细胞生成过程中表达GATA-1,并分析GATA-1挽救由GATA-1基因缺失突变导致的红细胞生成缺陷的能力。我们的结果表明,GATA-1以独特的方式在红细胞的增殖和成熟过程中发挥作用。在原始和终末红细胞生成过程中,GATA-1的早期表达足以促进红细胞的增殖。相反,GATA-1的晚期表达对于原始和终末红细胞的终末分化必不可少。因此,GATA-1通过不同机制影响红细胞的增殖和分化。