Shao C S, Takagi N
Research Center for Molecular Genetics, Hokkaido University, Sapporo, Japan.
Jpn J Genet. 1991 Aug;66(4):433-47. doi: 10.1266/jjg.66.433.
Karyotypes and X chromosome inactivation were studied in embryos obtained from female mice carrying T(X;4)37H translocation on day 6 to 8 of gestation by a BrdU-acridine orange method. A total of 18 different karyotypes were found in 477 embryos examined: 90.0% embryos were products expected from 2:2 alternate or adjacent 1 disjunction. 3:1 and adjacent 2 disjunctions accounted for approximately 8.0% and 0.7% conceptuses, respectively. In the embryo proper of balanced T37H/ + conceptuses, inactivation was random with respect to the normal X and the larger translocation X (4x) chromosome. In all the cells with the 4x inactive, the late replication apparently did not spread to the attached autosomal portion, although black/brown coat variegation implies spreading of inactivation into the autosomal region. The X chromosome segment deprived of the inactivation center remained active in all the cells examined and it exerted deleterious effects on embryonic or fetal development. Observation in embryos having two maternally derived X chromosomes showed that they were indeed resistant to inactivation in early extraembryonic cell lineages, and two copies of active X chromosomes in the trophectoderm fatally affected embryonic development due to inability to form the extraembryonic ectoderm and ectoplacental cone from the polar trophectoderm. In unbalanced X aneuploids the X chromosomes with the deletion were preferentially inactivated due to strong selection against nullisomy X.
通过BrdU-吖啶橙法,对妊娠第6至8天携带T(X;4)37H易位的雌性小鼠所获得的胚胎进行了核型和X染色体失活研究。在检查的477个胚胎中总共发现了18种不同的核型:90.0%的胚胎是2:2交替或相邻1分离产生的预期产物。3:1和相邻2分离分别占约8.0%和0.7%的孕体。在平衡的T37H/+孕体的胚胎本身中,失活相对于正常X染色体和较大的易位X(4x)染色体是随机的。在所有4x失活的细胞中,后期复制显然没有扩散到附着的常染色体部分,尽管黑/棕毛色斑驳意味着失活扩散到了常染色体区域。缺乏失活中心的X染色体片段在所有检查的细胞中都保持活跃,并且对胚胎或胎儿发育产生有害影响。对具有两条母源X染色体的胚胎的观察表明,它们在早期胚外细胞谱系中确实对失活有抗性,并且滋养外胚层中两条活跃的X染色体拷贝由于无法从极滋养外胚层形成胚外外胚层和胚盘锥体而致命地影响胚胎发育。在不平衡的X非整倍体中,由于对X单体的强烈选择,带有缺失的X染色体优先失活。