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E-钙黏蛋白的循环利用:一种调节钙黏蛋白动态变化的潜在机制。

Recycling of E-cadherin: a potential mechanism for regulating cadherin dynamics.

作者信息

Le T L, Yap A S, Stow J L

机构信息

Centre for Molecular and Cellular Biology, The University of Queensland, Brisbane, 4072 Queensland, Australia.

出版信息

J Cell Biol. 1999 Jul 12;146(1):219-32.

Abstract

E-Cadherin plays critical roles in many aspects of cell adhesion, epithelial development, and the establishment and maintenance of epithelial polarity. The fate of E-cadherin once it is delivered to the basolateral cell surface, and the mechanisms which govern its participation in adherens junctions, are not well understood. Using surface biotinylation and recycling assays, we observed that some of the cell surface E-cadherin is actively internalized and is then recycled back to the plasma membrane. The pool of E-cadherin undergoing endocytosis and recycling was markedly increased in cells without stable cell-cell contacts, i.e., in preconfluent cells and after cell contacts were disrupted by depletion of extracellular Ca2+, suggesting that endocytic trafficking of E-cadherin is regulated by cell-cell contact. The reformation of cell junctions after replacement of Ca2+ was then found to be inhibited when recycling of endocytosed E-cadherin was disrupted by bafilomycin treatment. The endocytosis and recycling of E-cadherin and of the transferrin receptor were similarly inhibited by potassium depletion and by bafilomycin treatment, and both proteins were accumulated in intracellular compartments by an 18 degrees C temperature block, suggesting that endocytosis may occur via a clathrin-mediated pathway. We conclude that a pool of surface E-cadherin is constantly trafficked through an endocytic, recycling pathway and that this may provide a mechanism for regulating the availability of E-cadherin for junction formation in development, tissue remodeling, and tumorigenesis.

摘要

E-钙黏蛋白在细胞黏附、上皮发育以及上皮极性的建立和维持等诸多方面发挥着关键作用。E-钙黏蛋白被转运至细胞基底外侧表面后的命运,以及调控其参与黏附连接的机制,目前尚不清楚。通过表面生物素化和循环分析,我们观察到部分细胞表面的E-钙黏蛋白会被主动内化,随后再循环回到质膜。在没有稳定细胞间接触的细胞中,即预汇合细胞以及细胞接触因细胞外Ca2+耗尽而被破坏后,经历内吞作用和再循环的E-钙黏蛋白池显著增加,这表明E-钙黏蛋白的内吞运输受细胞间接触调控。当用巴弗洛霉素处理破坏内吞的E-钙黏蛋白的再循环时,发现Ca2+替换后细胞连接的重新形成受到抑制。钾离子耗尽和巴弗洛霉素处理同样抑制了E-钙黏蛋白和转铁蛋白受体的内吞作用和再循环,并且在18℃温度阻断下,这两种蛋白都在细胞内区室中积累,表明内吞作用可能通过网格蛋白介导的途径发生。我们得出结论,表面E-钙黏蛋白的一部分通过内吞、再循环途径持续运输,这可能为在发育、组织重塑和肿瘤发生过程中调节E-钙黏蛋白用于连接形成的可用性提供一种机制。

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