Murray P, Edgar D
Department of Human Anatomy and Cell Biology, The University of Liverpool, Liverpool L69 3GE, United Kingdom.
J Cell Biol. 2000 Sep 4;150(5):1215-21. doi: 10.1083/jcb.150.5.1215.
The formation of the proamniotic cavity in the mammalian embryo is the earliest of many instances throughout development in which programmed cell death and the formation of epithelia play fundamental roles (Coucouvanis, E., and G.R. Martin. 1995. Cell. 83:279-287). To determine the role of the basement membrane (BM) in cavitation, we use embryoid bodies derived from mouse embryonic stem cells in which the LAMC1 genes have been inactivated to prevent BM deposition (Smyth, N., H.S. Vatansever, P. Murray, M. Meyer, C. Frie, M. Paulsson, and D. Edgar. 1999. J. Cell Biol. 144:151-610). We demonstrate here that LAMC1-/- embryoid bodies are unable to cavitate, and do not form an epiblast epithelium in the absence of a BM, although both embryonic ectodermal cells and extraembryonic endodermal cells do differentiate, as evidenced by the expression of cell-specific markers. Acceleration or rescue of BM deposition by exogenous laminin in wild-type or LAMC1-/- embryoid bodies, respectively, results in cavitation that is temporally and spatially associated with restoration of epiblast epithelial development. We conclude that the BM not only directly regulates development of epiblast epithelial cells, but also indirectly regulates the programmed cell death necessary for cavity formation.
哺乳动物胚胎中羊膜腔的形成是整个发育过程中许多实例中最早的一个,在这些实例中,程序性细胞死亡和上皮细胞的形成起着基本作用(Coucouvanis, E., and G.R. Martin. 1995. Cell. 83:279 - 287)。为了确定基底膜(BM)在空化过程中的作用,我们使用了源自小鼠胚胎干细胞的类胚体,其中LAMC1基因已被灭活以阻止基底膜的沉积(Smyth, N., H.S. Vatansever, P. Murray, M. Meyer, C. Frie, M. Paulsson, and D. Edgar. 1999. J. Cell Biol. 144:151 - 610)。我们在此证明,LAMC1基因敲除的类胚体无法形成空泡,并且在没有基底膜的情况下不会形成上胚层上皮,尽管胚胎外胚层细胞和胚外内胚层细胞都发生了分化,这由细胞特异性标志物的表达所证明。分别通过外源性层粘连蛋白加速或挽救野生型或LAMC1基因敲除的类胚体中的基底膜沉积,会导致空化,其在时间和空间上与上胚层上皮发育的恢复相关。我们得出结论,基底膜不仅直接调节上胚层上皮细胞的发育,还间接调节形成腔所需的程序性细胞死亡。