Schorpp-Kistner M, Wang Z Q, Angel P, Wagner E F
Deutsches Krebsforschungszentrum Heidelberg, Abteilung für Signaltransduktion und Wachstumskontrolle, Im Neuenheimer Feld 280, D-69120 Heidelberg, Germany.
EMBO J. 1999 Feb 15;18(4):934-48. doi: 10.1093/emboj/18.4.934.
Lack of JunB, an immediate early gene product and member of the AP-1 transcription factor family causes embryonic lethality between E8.5 and E10.0. Although mutant embryos are severely retarded in growth and development, cellular proliferation is apparently not impaired. Retardation and embryonic death are caused by the inability of JunB-deficient embryos to establish proper vascular interactions with the maternal circulation due to multiple defects in extra-embryonic tissues. The onset of the phenotypic defects correlates well with high expression of junB in wild-type extra-embryonic tissues. In trophoblasts, the lack of JunB causes a deregulation of proliferin, matrix metalloproteinase-9 (MMP-9) and urokinase plasminogen activator (uPA) gene expression, resulting in a defective neovascularization of the decidua. As a result of downregulation of the VEGF-receptor 1 (flt-1), blood vessels in the yolk sac mesoderm appeared dilated. Mutant embryos which escape these initial defects finally die from a non-vascularized placental labyrinth. Injection of junB-/- embryonic stem (ES) cells into tetraploid wild-type blastocysts resulted in a partial rescue, in which the ES cell-derived fetuses were no longer growth retarded and displayed a normal placental labyrinth. Therefore, JunB appears to be involved in multiple signaling pathways regulating genes involved in the establishment of a proper feto-maternal circulatory system.
JunB是一种即刻早期基因产物,属于AP - 1转录因子家族成员,缺乏JunB会导致胚胎在E8.5至E10.0之间死亡。尽管突变胚胎在生长和发育方面严重迟缓,但细胞增殖显然未受损害。发育迟缓和胚胎死亡是由于缺乏JunB的胚胎因胚外组织的多种缺陷而无法与母体循环建立适当的血管相互作用所致。表型缺陷的出现与野生型胚外组织中junB的高表达密切相关。在滋养层细胞中,缺乏JunB会导致增殖蛋白、基质金属蛋白酶 - 9(MMP - 9)和尿激酶型纤溶酶原激活剂(uPA)基因表达失调,从而导致蜕膜新生血管形成缺陷。由于血管内皮生长因子受体1(flt - 1)下调,卵黄囊中层的血管出现扩张。逃脱这些初始缺陷的突变胚胎最终死于无血管化的胎盘迷路。将junB - / - 胚胎干细胞注射到四倍体野生型囊胚中可实现部分拯救,其中胚胎干细胞衍生的胎儿不再生长迟缓,并具有正常的胎盘迷路。因此,JunB似乎参与了多条信号通路,这些信号通路调节着与建立适当的母胎循环系统相关的基因。