Harden Nicholas
Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, BC, Canada.
Differentiation. 2002 Jun;70(4-5):181-203. doi: 10.1046/j.1432-0436.2002.700408.x.
Wound healing in embryos and various developmental events in metazoans require the spreading and fusion of epithelial sheets. The complex signaling pathways regulating these processes are being pieced together through genetic, cell biological, and biochemical approaches. At present, dorsal closure of the Drosophila embryo is the best-characterized example of epithelial sheet movement. Dorsal closure involves migration of the lateral epidermal flanks to close a hole in the dorsal epidermis occupied by an epithelium called the amnioserosa. Detailed genetic studies have revealed a network of interacting signaling molecules regulating this process. At the center of this network is a Jun N-terminal kinase cascade acting at the leading edge of the migrating epidermis that triggers signaling by the TGF-beta superfamily member Decapentaplegic and which interacts with the Wingless pathway. These signaling modules regulate the cytoskeletal reorganization and cell shape change necessary to drive dorsal closure. Activation of this network requires signals from the amnioserosa and input from a variety of proteins at cell-cell junctions. The Rho family of small GTPases is also instrumental, both in activation of signaling and regulation of the cytoskeleton. Many of the proteins regulating dorsal closure have been implicated in epithelial movement in other organisms, and dorsal closure has emerged as an ideal model system for the study of the migration and fusion of epithelial sheets.
胚胎中的伤口愈合以及后生动物的各种发育事件都需要上皮细胞层的扩展和融合。通过遗传学、细胞生物学和生物化学方法,调控这些过程的复杂信号通路正逐渐被拼凑起来。目前,果蝇胚胎的背侧闭合是上皮细胞层运动特征最为明确的例子。背侧闭合涉及侧表皮侧翼的迁移,以闭合背侧表皮上一个被称为羊膜浆膜的上皮细胞占据的孔洞。详细的遗传学研究揭示了一个相互作用的信号分子网络来调控这一过程。在这个网络的中心是一个JNK级联反应,它作用于迁移表皮的前缘,触发TGF-β超家族成员Decapentaplegic的信号传导,并与Wingless信号通路相互作用。这些信号模块调控驱动背侧闭合所需的细胞骨架重组和细胞形状变化。该网络的激活需要来自羊膜浆膜的信号以及来自细胞间连接多种蛋白质的输入。小GTP酶的Rho家族在信号激活和细胞骨架调控方面也发挥着重要作用。许多调控背侧闭合的蛋白质在其他生物体的上皮运动中也有涉及,背侧闭合已成为研究上皮细胞层迁移和融合的理想模型系统。