McNeill H, Ryan T A, Smith S J, Nelson W J
Department of Molecular and Cellular Physiology, Stanford University School of Medicine, California 94305-5426.
J Cell Biol. 1993 Mar;120(5):1217-26. doi: 10.1083/jcb.120.5.1217.
Cell-cell adhesion is at the top of a molecular cascade of protein interactions that leads to the remodeling of epithelial cell structure and function. The earliest events that initiate this cascade are poorly understood. Using high resolution differential interference contrast microscopy and retrospective immunohistochemistry, we observed that cell-cell contact in MDCK epithelial cells consists of distinct stages that correlate with specific changes in the interaction of E-cadherin with the cytoskeleton. We show that formation of a stable contact is preceded by numerous, transient contacts. During this time and immediately following formation of a stable contact, there are no detectable changes in the distribution, relative amount, or Triton X-100 insolubility of E-cadherin at the contact. After a lag period of approximately 10 min, there is a rapid acquisition of Triton X-100 insolubility of E-cadherin localized to the stable contact. Significantly, the total amount of E-cadherin at the contact remains unchanged during this time. The increase in the Triton X-100 insoluble pool of E-cadherin does not correlate with changes in the distribution of actin or fodrin, suggesting that the acquisition of the Triton X-100 insolubility is due to changes in E-cadherin itself, or closely associated proteins such as the catenins. The 10 minute lag period, and subsequent prompt and localized nature of E-cadherin reorganization indicate a form of signaling is occurring.
细胞间黏附处于蛋白质相互作用分子级联反应的顶端,该反应会导致上皮细胞结构和功能的重塑。引发此级联反应的最早事件目前尚不清楚。利用高分辨率微分干涉相差显微镜和回顾性免疫组织化学技术,我们观察到MDCK上皮细胞中的细胞间接触由不同阶段组成,这些阶段与E-钙黏蛋白与细胞骨架相互作用的特定变化相关。我们发现,在形成稳定接触之前会有许多短暂接触。在此期间以及形成稳定接触后立即观察到,接触部位的E-钙黏蛋白在分布、相对含量或对Triton X-100的不溶性方面均未检测到变化。经过约10分钟的延迟期后,定位于稳定接触部位的E-钙黏蛋白对Triton X-100的不溶性迅速增加。值得注意的是,在此期间接触部位的E-钙黏蛋白总量保持不变。E-钙黏蛋白对Triton X-100不溶性部分的增加与肌动蛋白或血影蛋白的分布变化无关,这表明E-钙黏蛋白对Triton X-100不溶性的获得是由于E-钙黏蛋白本身或紧密相关蛋白(如连环蛋白)的变化所致。10分钟的延迟期以及随后E-钙黏蛋白重组的迅速和局部性质表明正在发生一种信号传导形式。