Winklbauer Rudolf
Department of Cell and Systems Biology, University of Toronto, Toronto, Canada,
Subcell Biochem. 2012;60:301-20. doi: 10.1007/978-94-007-4186-7_13.
Xenopus gastrulation consists of the orderly deformation of a single, multilayered cell sheet that resembles a multilayered epithelium, and flexible cell-cell adhesion has to provide tissue cohesion while allowing for cell rearrangements that drive gastrulation. A few classic cadherins are expressed in the Xenopus early embryo. The prominent C-cadherin is essential for the cohesion of the animal part of the gastrula including ectoderm and chordamesoderm, and it contributes to the adhesion of endoderm and anterior mesoderm in the vegetal moiety. The cadherin/catenin complex is expressed in a graded pattern which is stable during early development. Regional differences in cell adhesion conform to the graded cadherin/catenin expression pattern. However, although the cadherin/catenin pattern seems to be actively maintained, and cadherin function is modulated to reinforce differential adhesiveness, it is not clear how regional differences in tissue cohesion affect gastrulation. Manipulating cadherin expression or function does not induce cell sorting or boundary formation in the embryo. Moreover, known boundary formation mechanisms in the gastrula are based on active cell repulsion. Cell rearrangement is also compatible with variable tissue cohesion. Thus, identifying roles for differential adhesion in the Xenopus gastrula remains a challenge.
非洲爪蟾原肠胚形成过程包括一个类似于多层上皮组织的单层多层细胞片的有序变形,而灵活的细胞间黏附必须在提供组织黏附力的同时,允许驱动原肠胚形成的细胞重排。一些经典的钙黏蛋白在非洲爪蟾早期胚胎中表达。突出的C-钙黏蛋白对于原肠胚动物部分(包括外胚层和脊索中胚层)的黏附至关重要,并且它有助于植物部分内胚层和前中胚层的黏附。钙黏蛋白/连环蛋白复合体以梯度模式表达,在早期发育过程中是稳定的。细胞黏附的区域差异与钙黏蛋白/连环蛋白的梯度表达模式一致。然而,尽管钙黏蛋白/连环蛋白模式似乎被积极维持,并且钙黏蛋白功能被调节以增强差异黏附性,但尚不清楚组织黏附的区域差异如何影响原肠胚形成。操纵钙黏蛋白的表达或功能不会在胚胎中诱导细胞分选或边界形成。此外,原肠胚中已知的边界形成机制是基于活跃的细胞排斥。细胞重排也与可变的组织黏附性相容。因此,确定非洲爪蟾原肠胚中差异黏附的作用仍然是一个挑战。