Institute of Molecular and Cell Biology, 61 Biopolis Drive, 138673, Singapore.
Development. 2010 Jun;137(12):2023-32. doi: 10.1242/dev.045088.
Dorsal closure (DC) of the Drosophila embryo is a model for the study of wound healing and developmental epithelial fusions, and involves the sealing of a hole in the epidermis through the migration of the epidermal flanks over the tissue occupying the hole, the amnioserosa. During DC, the cells at the edge of the migrating epidermis extend Rac- and Cdc42-dependent actin-based lamellipodia and filopodia from their leading edge (LE), which exhibits a breakdown in apicobasal polarity as adhesions are severed with the neighbouring amnioserosa cells. Studies using mammalian cells have demonstrated that Scribble (Scrib), an important determinant of apicobasal polarity that functions in a protein complex, controls polarized cell migration through recruitment of Rac, Cdc42 and the serine/threonine kinase Pak, an effector for Rac and Cdc42, to the LE. We have used DC and the follicular epithelium to study the relationship between Pak and the Scrib complex at epithelial membranes undergoing changes in apicobasal polarity and adhesion during development. We propose that, during DC, the LE membrane undergoes an epithelial-to-mesenchymal-like transition to initiate epithelial sheet migration, followed by a mesenchymal-to-epithelial-like transition as the epithelial sheets meet up and restore cell-cell adhesion. This latter event requires integrin-localized Pak, which recruits the Scrib complex in septate junction formation. We conclude that there are bidirectional interactions between Pak and the Scrib complex modulating epithelial plasticity. Scrib can recruit Pak to the LE for polarized cell migration but, as migratory cells meet up, Pak can recruit the Scrib complex to restore apicobasal polarity and cell-cell adhesion.
果蝇胚胎的背侧闭合(DC)是研究伤口愈合和发育上皮融合的模型,涉及通过表皮侧翼迁移覆盖填充孔的组织(羊膜)来封闭表皮上的孔。在 DC 过程中,迁移表皮边缘的细胞从前缘(LE)延伸出 Rac 和 Cdc42 依赖性的肌动蛋白片状伪足和丝状伪足,LE 表现出顶端-基底极性的破坏,因为与相邻的羊膜细胞的粘附被切断。使用哺乳动物细胞的研究表明,Scribble(Scrib),一种对顶端-基底极性起重要决定作用的蛋白复合物,通过募集 Rac、Cdc42 和丝氨酸/苏氨酸激酶 Pak 来控制极化细胞迁移,Pak 是 Rac 和 Cdc42 的效应物。我们使用 DC 和滤泡上皮来研究在发育过程中顶端-基底极性和粘附发生变化时,Pak 和 Scrib 复合物在经历极性变化和粘附的上皮膜之间的关系。我们提出,在 DC 过程中,LE 膜经历上皮到间质样的转变,以启动上皮片迁移,然后是间质到上皮样的转变,因为上皮片相遇并恢复细胞-细胞粘附。后一事件需要整合素定位的 Pak,它招募 Scrib 复合物形成隔膜连接。我们得出结论,Pak 和 Scrib 复合物之间存在双向相互作用,调节上皮可塑性。Scrib 可以募集 Pak 到 LE 以进行极化细胞迁移,但随着迁移细胞相遇,Pak 可以募集 Scrib 复合物来恢复顶端-基底极性和细胞-细胞粘附。