Longo Letizia, Vanegas Olga Camacho, Patel Meghavi, Rosti Vittorio, Li Haiqing, Waka John, Merghoub Taha, Pandolfi Pier Paolo, Notaro Rosario, Manova Katia, Luzzatto Lucio
Department of Human Genetics, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA.
EMBO J. 2002 Aug 15;21(16):4229-39. doi: 10.1093/emboj/cdf426.
Mouse chimeras from embryonic stem cells in which the X-linked glucose 6-phosphate dehydrogenase (G6PD) gene had been targeted were crossed with normal females. First-generation (F(1)) G6PD(+/-) heterozygotes born from this cross were essentially normal; analysis of their tissues demonstrated strong selection for cells with the targeted G6PD allele on the inactive X chromosome. When these F(1) G6PD(+/-) females were bred to normal males, only normal G6PD mice were born, because: (i) hemizygous G6PD(-) male embryos died by E10.5 and their development was arrested from E7.5, the time of onset of blood circulation; (ii) heterozygous G6PD(+/-) females showed abnormalities from E8.5, and died by E11.5; and (iii) severe pathological changes were present in the placenta of both G6PD(-) and G6PD(+/-) embryos. Thus, G6PD is not indispensable for early embryo development; however, severe G6PD deficiency in the extraembryonic tissues (consequent on selective inactivation of the normal paternal G6PD allele) impairs the development of the placenta and causes death of the embryo. Most importantly, G6PD is indispensable for survival when the embryo is exposed to oxygen through its blood supply.
对X连锁葡萄糖-6-磷酸脱氢酶(G6PD)基因被靶向修饰的胚胎干细胞来源的小鼠嵌合体与正常雌性小鼠进行杂交。此次杂交产生的第一代(F(1))G6PD(+/-)杂合子基本正常;对其组织的分析表明,在失活的X染色体上,带有靶向G6PD等位基因的细胞受到强烈选择。当这些F(1) G6PD(+/-)雌性小鼠与正常雄性小鼠交配时,只产生了正常的G6PD小鼠,原因如下:(i)半合子G6PD(-)雄性胚胎在胚胎期第10.5天死亡,其发育从胚胎期第7.5天(血液循环开始的时间)就停止了;(ii)杂合子G6PD(+/-)雌性小鼠从胚胎期第8.5天开始出现异常,并在胚胎期第11.5天死亡;(iii)G6PD(-)和G6PD(+/-)胚胎的胎盘均出现严重病理变化。因此,G6PD对于早期胚胎发育并非不可或缺;然而,胚外组织中严重的G6PD缺乏(由于正常父本G6PD等位基因的选择性失活)会损害胎盘发育并导致胚胎死亡。最重要的是,当胚胎通过血液供应接触氧气时,G6PD对于其存活是不可或缺的。