Desai Ravi A, Gao Lin, Raghavan Srivatsan, Liu Wendy F, Chen Christopher S
Department of Bioengineering, University of Pennsylvania, Philadelphia, PA 19104, USA.
J Cell Sci. 2009 Apr 1;122(Pt 7):905-11. doi: 10.1242/jcs.028183. Epub 2009 Mar 3.
Cell polarity is orchestrated by numerous extracellular cues, and guides events such as chemotaxis, mitosis and wound healing. In scrape-wound assays of cell monolayers, wound-edge cells orient their centrosomes towards the wound, a process that appears to depend on the formation of new cell-extracellular-matrix adhesions as cells spread into the wound. In direct contrast to scrape-wounded cells, isolated cells without cell-cell contacts failed to polarize, suggesting that asymmetry of cell-cell adhesions resulting from monolayer disruption might contribute to polarization. By using micropatterned substrates to engineer such asymmetries in kidney epithelial cells, we found that cell-cell contact induced displacement of the nucleus towards the contact, and also caused centrosomal reorientation and lamellipodial ruffling to the distal side of the nucleus. Upon release from micropatterned constraints, cells exhibited directed migration away from the cell-cell contact. Disrupting E-cadherin engagement randomized nuclear position and lamellipodial ruffling in patterned cultures, and abrogated scrape-wound-induced cell reorientation, but not migration rate. Polarity that was induced by cell-cell contact required an intact actin cytoskeleton and Cdc42 activity, but not RhoA or Rac signaling. Together, these findings demonstrate a novel role for cell-cell adhesion in polarization, and have implications for wound healing and developmental patterning.
细胞极性由众多细胞外信号协调,并引导诸如趋化作用、有丝分裂和伤口愈合等事件。在细胞单层的划痕损伤实验中,伤口边缘的细胞将其中心体朝向伤口定向,这一过程似乎依赖于随着细胞向伤口处铺展而形成新的细胞 - 细胞外基质黏附。与划痕损伤的细胞形成直接对比的是,没有细胞 - 细胞接触的分离细胞无法极化,这表明单层破坏导致的细胞 - 细胞黏附不对称可能有助于极化。通过使用微图案化底物在肾上皮细胞中构建这种不对称性,我们发现细胞 - 细胞接触会诱导细胞核向接触部位位移,还会导致中心体重新定向以及片足褶皱向细胞核的远端一侧。从微图案化限制中释放后,细胞表现出远离细胞 - 细胞接触的定向迁移。破坏E - 钙黏蛋白的结合会使图案化培养物中的细胞核位置和片足褶皱随机化,并消除划痕损伤诱导的细胞重新定向,但不影响迁移速率。细胞 - 细胞接触诱导的极性需要完整的肌动蛋白细胞骨架和Cdc42活性,但不需要RhoA或Rac信号传导。总之,这些发现证明了细胞 - 细胞黏附在极化中的新作用,并对伤口愈合和发育模式形成具有启示意义。