Zmuidzinas A, Fischer K D, Lira S A, Forrester L, Bryant S, Bernstein A, Barbacid M
Department of Molecular Biology, Bristol-Myers Squibb Pharmaceutical Research Institute, Princeton, NJ 08543-4000.
EMBO J. 1995 Jan 3;14(1):1-11. doi: 10.1002/j.1460-2075.1995.tb06969.x.
Previous studies have suggested that the vav protooncogene plays an important role in hematopoiesis. To study this further, we have ablated the vav protooncogene by homologous recombination in embryonic stem (ES) cells. Homozygous vav (-/-) ES clones differentiate normally in culture and generate cells of erythroid, myeloid and mast cell lineages. Mice heterozygous for the targeted vav allele do not display any obvious abnormalities. However, homozygous embryos die very early during development. Crosses of vav (+/-) heterozygous mice yield apparently normal vav (-/-) E3.5 embryos but not post-implantation embryos (> or = E7.5). Furthermore, homozygous vav (-/-) blastocysts do not hatch in vitro. These results indicate that vav is essential for an early developmental step(s) that precedes the onset of hematopoiesis. Consistent with the phenotypic analysis of vav (-/-) embryos, we have identified Vav immunoreactivity in the extra-embryonic trophoblastic cell layer but not in the inner embryonic cell mass of E3.5 preimplantation embryos or in the egg cylinder of E6.5 and E7.5 post-implantation embryos. These results suggest that the vav gene is essential for normal trophoblast development and for implantation of the developing embryo.
先前的研究表明,vav原癌基因在造血过程中起重要作用。为了进一步研究这一点,我们通过胚胎干细胞(ES细胞)中的同源重组消除了vav原癌基因。纯合vav(-/-)ES克隆在培养中正常分化,并产生红系、髓系和肥大细胞系的细胞。靶向vav等位基因的杂合小鼠没有表现出任何明显异常。然而,纯合胚胎在发育过程中很早就死亡。vav(+/-)杂合小鼠的杂交产生明显正常的vav(-/-)E3.5胚胎,但没有植入后胚胎(≥E7.5)。此外,纯合vav(-/-)囊胚在体外不孵化。这些结果表明,vav对于造血开始之前的早期发育步骤是必不可少的。与vav(-/-)胚胎的表型分析一致,我们在E3.5植入前胚胎的胚外滋养层细胞层中鉴定到了Vav免疫反应性,但在E6.5和E7.5植入后胚胎的卵圆柱或内胚团中未鉴定到。这些结果表明,vav基因对于正常的滋养层发育和发育中胚胎的植入是必不可少的。