Pitelka D R, Taggart B N
J Cell Biol. 1983 Mar;96(3):606-12. doi: 10.1083/jcb.96.3.606.
Occluding junctions of mammary epithelial cells in nonproliferating primary culture occasionally display an atypical pattern of intramembrane strands oriented predominantly perpendicular, instead of roughly parallel, to the apical border of the junction. To test whether the orienting influence was a centripetal cytoskeletal tension often observed in epithelial sheets on fixed substrates, we seeded cells at low density; this allows them to spread maximally while forming a barely confluent pavement. The result was a fourfold increase in the percentage of junctions with the strongly aligned, atypical pattern. Closely similar configurations were observed as the earliest detectable effect of chelation of extracellular Ca++, which induced pronounced centripetal contraction of the cell body. Externally imposed tension, applied so as to stretch cells in one direction only, affected the positions of strands in stretched junctions as might be predicted, by flattening their undulations, increasing their alignment parallel to the apical border. Thus mechanical tension alone, whether inherent in the cytoskeleton or imposed on the cell surface by exogenous force, can cause coordinate lateral displacement of macromolecular assemblies within the membranes of both joined cells.
在非增殖性原代培养的乳腺上皮细胞中,封闭连接偶尔会呈现出一种非典型的膜内条索模式,这些条索主要垂直而非大致平行于连接的顶端边界。为了测试这种定向影响是否是上皮片层在固定基质上常观察到的向心细胞骨架张力,我们以低密度接种细胞;这使它们能够最大程度地铺展,同时形成几乎不汇合的单层细胞。结果是具有强烈对齐的非典型模式的连接百分比增加了四倍。作为细胞外Ca++螯合最早可检测到的效应,观察到了非常相似的构型,这会引起细胞体明显的向心收缩。仅在一个方向上施加外部张力以拉伸细胞,如预期的那样影响了拉伸连接中条索的位置,通过使它们的起伏变平,增加它们与顶端边界平行的对齐程度。因此,仅机械张力,无论是细胞骨架固有的还是由外力施加在细胞表面的,都可导致两个相连细胞的膜内大分子组装体发生协同侧向位移。