Cahana A, Jin X L, Reiner O, Wynshaw-Boris A, O'Neill C
Human Reproduction Unit, Department of Physiology, University of Sydney, Royal North Shore Hospital, St. Leonards, New South Wales, Australia.
Mol Reprod Dev. 2003 Oct;66(2):134-42. doi: 10.1002/mrd.10339.
Homozygous deletion of the Lis1 gene (Lis1(-/-)) in mouse resulted in early embryonic lethality immediately after embryo implantation by an undefined mechanism. We seek to define the nature of this demise. LIS1 (pafah1b1) is a 46 kDa protein with seven tryptophan-aspartate (WD) repeats. It docks with many proteins and has been implicated in microtubular function, cell division, intercellular transport, and nuclear and cellular motility. Combined Western and quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) analyses showed that LIS1 expression from the blastocyst stage required new transcription from the embryonic genome. Consequently, the death of post-implantation embryos may not reflect the first time during development that LIS1 was required, rather, it may reflect the first time following depletion of gametic stores that its actions were essential. Following culture of blastocysts in vitro for 96 hr the inner cell mass (ICM) of null embryos were significantly smaller than ICM of wild-type siblings. Normal blastocyst outgrowths after 96-hr culture had high levels of LIS1 expression in the outer cells of developing ICM and extensive expression in trophoblast cells. Lis1(-/-) embryos had significantly smaller trophoblast nuclei than wild-type embryos. The results show that LIS1 expression is required for the continued normal development of the ICM and optimal trophoblast giant cell formation.
小鼠中Lis1基因的纯合缺失(Lis1(-/-))会通过一种不明机制导致胚胎着床后立即出现早期胚胎致死。我们试图确定这种死亡的本质。LIS1(pafah1b1)是一种含有七个色氨酸-天冬氨酸(WD)重复序列的46 kDa蛋白质。它与许多蛋白质结合,并与微管功能、细胞分裂、细胞间运输以及核和细胞运动有关。蛋白质免疫印迹和定量逆转录聚合酶链反应(RT-PCR)联合分析表明,从囊胚期开始的LIS1表达需要胚胎基因组的新转录。因此,着床后胚胎的死亡可能并不反映发育过程中首次需要LIS1,相反,它可能反映了配子储存耗尽后其作用首次变得至关重要。在体外将囊胚培养96小时后,缺失胚胎的内细胞团(ICM)明显小于野生型同胞的ICM。96小时培养后的正常囊胚生长在发育中的ICM外层细胞中有高水平的LIS1表达,在滋养层细胞中有广泛表达。Lis1(-/-)胚胎的滋养层细胞核明显小于野生型胚胎。结果表明,LIS1表达是ICM持续正常发育和最佳滋养层巨细胞形成所必需的。