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原肠胚形成期鸡和鹌鹑胚胎中胚盘边缘的细胞连接与运动

Cell junctions and locomotion of the blastoderm edge in gastrulating chick and quail embryos.

作者信息

Andries L, Harrisson F, Hertsens R, Vakaet L

出版信息

J Cell Sci. 1985 Oct;78:191-204. doi: 10.1242/jcs.78.1.191.

Abstract

The blastoderm edge migrates by the active locomotion of a multilayer of epithelial cells, the so-called margin of overgrowth (MO), that uses the vitelline membrane as its substratum. The structural unity formed by the margin of overgrowth cells and their rapid migration suggest coordination of locomotion between individual cells. Using transmission electron microscopy of thin sections and freeze-fracture, we attempted to determine if the pattern of junctions of the migrating margin of overgrowth is related to the suggested cell--cell cooperation between individual cells in this region. In the leading edge there are large areas of closely apposed cell membranes. Incipient desmosomes and small gap junctions were observed. Tight junctions consisted of isolated strands or isolated networks of tight-junctional strands. In the proximal part of the margin of overgrowth the size of the gap junctions increased and the desmosomes were fully developed. Tight-junctional strands were either isolated or arranged into an isolated network. A broad belt of tight junctions was observed at the transition between margin of overgrowth and non-marginal cells. The distribution of the junctional elements in the MO suggests that junctions contribute to the maintenance of the structural and functional organization of the margin of overgrowth. Furthermore, the spatial distribution of the junctions might give information about the mechanism of locomotion of the margin of overgrowth.

摘要

胚盘边缘通过多层上皮细胞(即所谓的过度生长边缘,MO)的主动移动而迁移,这些上皮细胞以卵黄膜为基质。过度生长边缘细胞形成的结构统一体及其快速迁移表明单个细胞之间存在运动协调。我们利用超薄切片和冷冻断裂的透射电子显微镜技术,试图确定过度生长边缘迁移部分的连接模式是否与该区域单个细胞之间推测的细胞间协作有关。在前缘,有大片紧密相邻的细胞膜区域。观察到了初期桥粒和小间隙连接。紧密连接由孤立的链或紧密连接链的孤立网络组成。在过度生长边缘的近端部分,间隙连接的尺寸增大,桥粒完全发育。紧密连接链要么是孤立的,要么排列成孤立的网络。在过度生长边缘与非边缘细胞的过渡处观察到一条宽阔的紧密连接带。MO中连接元件的分布表明,连接有助于维持过度生长边缘的结构和功能组织。此外,连接的空间分布可能提供有关过度生长边缘运动机制的信息。

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