Fink R D, Cooper M S
Department of Biological Sciences, Mount Holyoke College, South Hadley, Massachusetts 01075, USA.
Dev Biol. 1996 Mar 15;174(2):180-9. doi: 10.1006/dbio.1996.0064.
During embryogenesis, the killifish Fundulus heteroclitus forms a monolayered tight epithelium called the enveloping layer (EVL). These epithelial cells have been shown to rearrange during epiboly, as they spread to cover the large yolk cell. Membrane remodeling by exocytosis and endocytosis is important in establishing and maintaining the apical-basolateral polarity of many epithelial cells and is a necessary component of epithelial rearrangements, as cells constantly break contacts and reform tight junctions. To study these phenomena in Fundulus heteroclitus embryos, we labeled the apical membranes of EVL cells with fluorescent lectins and lipids and followed membrane dynamics. Apical membrane components were found to be highly immobilized, allowing us to observe localized sites of apical membrane turnover in situ, over the period of several days. We found that apical membrane turnover in the EVL cells of post-epiboly killifish embryos is accelerated at cell-cell contacts, in a peripheral band of apical membrane which closely borders circumferential tight junctions. Moreover, this turnover rate is increased during epiboly, when the cells are actively rearranging. To investigate whether this increased membrane turnover may be related to the mechanical forces experienced by the rearranging EVL cells, post- epiboly embryos, whose EVL cells no longer rearrange, were subjected to mechanical deformation. In these manipulated embryos, apical membrane turnover was accelerated at cell-cell contacts in EVL cells which experienced externally applied mechanical tension. These results suggest that local mechanical tension may modulate regional apical membrane turnover within EVL cells during the process of epiboly.
在胚胎发育过程中,底鳉(Fundulus heteroclitus)形成了一层称为包被层(EVL)的单层紧密上皮细胞。这些上皮细胞在胚盘形成过程中会发生重排,它们会扩散以覆盖大的卵黄细胞。通过胞吐作用和内吞作用进行的膜重塑对于建立和维持许多上皮细胞的顶-基底极性很重要,并且是上皮细胞重排的必要组成部分,因为细胞不断地断开连接并重新形成紧密连接。为了研究底鳉胚胎中的这些现象,我们用荧光凝集素和脂质标记了EVL细胞的顶膜,并追踪膜动力学。发现顶膜成分高度固定,这使我们能够在几天的时间内原位观察顶膜更新的局部位点。我们发现,胚盘形成后底鳉胚胎的EVL细胞中的顶膜更新在细胞-细胞接触处加速,位于与周向紧密连接紧密相邻的顶膜外周带。此外,在胚盘形成期间,当细胞积极重排时,这种更新速率会增加。为了研究这种增加的膜更新是否可能与重排的EVL细胞所经历的机械力有关,对其EVL细胞不再重排的胚盘形成后胚胎施加机械变形。在这些经过处理的胚胎中,经历外部施加机械张力的EVL细胞在细胞-细胞接触处的顶膜更新加速。这些结果表明,在胚盘形成过程中,局部机械张力可能调节EVL细胞内区域顶膜的更新。