Ueda Takeshi, Watanabe-Fukunaga Rie, Ogawa Hironori, Fukuyama Hidehiro, Higashi Yujiro, Nagata Shigekazu, Fukunaga Rikiro
Laboratory of Genetics (B-3), Graduate School of Frontier Biosciences and Graduate School of Medicine, Osaka University, Japan Science and Technology Corporation, Osaka, Japan.
Genes Cells. 2007 May;12(5):581-92. doi: 10.1111/j.1365-2443.2007.01080.x.
The SWI2/SNF2 family ATPase, p400/mDomino, is a core subunit of a large chromatin-remodeling complex, and is currently suggested to play a unique function in histone variant exchange, a process by which chromatin structure is altered. Here, we investigated the role of p400/mDomino in mammalian development by generating mutant mice with a targeted deletion of the N-terminal domain of p400/mDomino (referred to as mDom(DeltaN/DeltaN)). The mDom(DeltaN/DeltaN) mice died on embryonic day 11.5 (E11.5), and displayed an anemic appearance and slight deformity of the neural tube. DNA microarray and quantitative RT-PCR analyses revealed that all of the embryonic globin genes and a globin chaperone gene were poorly expressed in the mDom(DeltaN/DeltaN) embryo and yolk sac on E8.5, indicating that primitive erythropoiesis was impaired. A hematopoietic colony assay indicated that the hematopoietic activity of the yolk sac was significantly blocked in the mutant mice. We also found that the expression of a limited set of Hox genes, including Hoxa7, Hoxa9 and Hoxb9, was drastically enhanced in the mDom(DeltaN/DeltaN) yolk sacs. These results suggest that p400/mDomino plays a critical role in embryonic hematopoiesis by regulating the expression of developmentally essential genes such as those in the Hox gene cluster.
SWI2/SNF2家族ATP酶p400/mDomino是一种大型染色质重塑复合物的核心亚基,目前认为其在组蛋白变体交换(一种改变染色质结构的过程)中发挥独特作用。在此,我们通过生成靶向缺失p400/mDomino N端结构域的突变小鼠(称为mDom(DeltaN/DeltaN))来研究p400/mDomino在哺乳动物发育中的作用。mDom(DeltaN/DeltaN)小鼠在胚胎第11.5天(E11.5)死亡,表现出贫血外观和神经管轻微畸形。DNA微阵列和定量RT-PCR分析显示,在E8.5时,所有胚胎珠蛋白基因和一个珠蛋白伴侣基因在mDom(DeltaN/DeltaN)胚胎和卵黄囊中表达不佳,表明原始红细胞生成受损。造血集落测定表明,突变小鼠卵黄囊的造血活性明显受阻。我们还发现,包括Hoxa7、Hoxa9和Hoxb9在内的一组有限的Hox基因在mDom(DeltaN/DeltaN)卵黄囊中的表达显著增强。这些结果表明,p400/mDomino通过调节发育必需基因(如Hox基因簇中的基因)的表达在胚胎造血中起关键作用。