Hadland Brandon K, Huppert Stacey S, Kanungo Jyotshnabala, Xue Yingzi, Jiang Rulang, Gridley Thomas, Conlon Ronald A, Cheng Alec M, Kopan Raphael, Longmore Gregory D
Department of Medicine, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis MO 63110, USA.
Blood. 2004 Nov 15;104(10):3097-105. doi: 10.1182/blood-2004-03-1224. Epub 2004 Jul 13.
Notch1 is known to play a critical role in regulating fates in numerous cell types, including those of the hematopoietic lineage. Multiple defects exhibited by Notch1-deficient embryos confound the determination of Notch1 function in early hematopoietic development in vivo. To overcome this limitation, we examined the developmental potential of Notch1(-/-) embryonic stem (ES) cells by in vitro differentiation and by in vivo chimera analysis. Notch1 was found to affect primitive erythropoiesis differentially during ES cell differentiation and in vivo, and this result reflected an important difference in the regulation of Notch1 expression during ES cell differentiation relative to the developing mouse embryo. Notch1 was dispensable for the onset of definitive hematopoiesis both in vitro and in vivo in that Notch1(-/-) definitive progenitors could be detected in differentiating ES cells as well as in the yolk sac and early fetal liver of chimeric mice. Despite the fact that Notch1(-/-) cells can give rise to multiple types of definitive progenitors in early development, Notch1(-/-) cells failed to contribute to long-term definitive hematopoiesis past the early fetal liver stage in the context of a wild-type environment in chimeric mice. Thus, Notch1 is required, in a cell-autonomous manner, for the establishment of long-term, definitive hematopoietic stem cells (HSCs).
已知Notch1在调节多种细胞类型(包括造血谱系细胞)的命运中起关键作用。Notch1缺陷胚胎表现出的多种缺陷使得在体内早期造血发育中确定Notch1的功能变得复杂。为了克服这一局限性,我们通过体外分化和体内嵌合体分析研究了Notch1(-/-)胚胎干细胞(ES细胞)的发育潜力。发现Notch1在ES细胞分化过程中和体内对原始红细胞生成有不同影响,这一结果反映了ES细胞分化过程中Notch1表达调控与发育中的小鼠胚胎相比存在重要差异。在体外和体内,Notch1对于确定性造血的起始都是可有可无的,因为在分化的ES细胞以及嵌合小鼠的卵黄囊和早期胎肝中都可以检测到Notch1(-/-)确定性祖细胞。尽管Notch1(-/-)细胞在早期发育中可以产生多种类型的确定性祖细胞,但在嵌合小鼠的野生型环境中,Notch1(-/-)细胞在早期胎肝阶段之后无法对长期确定性造血做出贡献。因此,以细胞自主方式,Notch1是建立长期、确定性造血干细胞(HSC)所必需的。