Winklbauer R, Nagel M
Max-Planck-Institut für Entwicklungsbiologie, Tübingen, Federal Republic of Germany.
Dev Biol. 1991 Dec;148(2):573-89. doi: 10.1016/0012-1606(91)90275-8.
The movement of the dorsal mesoderm across the blastocoel roof of the Xenopus gastrula is examined. We show that different parts of the mesoderm which can be distinguished by their morphogenetic behavior in the embryo are all able to migrate independently on the inner surface of the blastocoel roof. The direction of mesoderm cell migration is determined by guidance cues in the extracellular matrix of the blastocoel roof and by an intrinsic tissue polarity of the mesoderm. The mesodermal polarity shows the same orientation as the external guidance cues and is strongly expressed in the more posterior mesoderm. The guidance cues of the extracellular matrix are recognized by all parts of the dorsal mesoderm and even by nonmesodermal cells from other regions of the embryo. The extracellular matrix consists of a network of fibronectin-containing fibrils. The adhesiveness of this matrix does not vary along the axis of mesoderm movement, excluding haptotaxis as a guidance mechanism in this system. However, an intact fibronectin fibril structure is necessary for directional mesoderm cell migration. When the assembly of fibronectin into fibrils is inhibited, mesoderm explants still migrate on the amorphous extracellular matrix, but no longer directionally. It is proposed that polarized extracellular matrix fibrils may normally guide the migrating mesoderm to its target region.
研究了非洲爪蟾原肠胚背侧中胚层穿过囊胚腔顶的运动。我们发现,中胚层的不同部分在胚胎中可通过其形态发生行为加以区分,它们都能够在囊胚腔顶的内表面独立迁移。中胚层细胞迁移的方向由囊胚腔顶细胞外基质中的引导线索以及中胚层固有的组织极性决定。中胚层极性与外部引导线索具有相同的方向,并且在更靠后的中胚层中强烈表达。囊胚腔顶细胞外基质的引导线索能被背侧中胚层的所有部分识别,甚至能被来自胚胎其他区域的非中胚层细胞识别。细胞外基质由含纤连蛋白的纤维网络组成。该基质的黏附性沿中胚层运动轴并无变化,排除了趋触性作为该系统中引导机制的可能性。然而,完整的纤连蛋白纤维结构对于中胚层细胞的定向迁移是必需的。当纤连蛋白组装成纤维的过程受到抑制时,中胚层外植体仍能在无定形的细胞外基质上迁移,但不再具有方向性。有人提出,极化的细胞外基质纤维通常可能引导迁移的中胚层到达其目标区域。