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将 VE-cadherin 关进“牢笼”以重塑连接。

Putting VE-cadherin into JAIL for junction remodeling.

机构信息

Institute of Anatomy and Vascular Biology, Westfälische Wilhelms-Universität Münster, Münster Germany.

Institute of Anatomy and Vascular Biology, Westfälische Wilhelms-Universität Münster, Münster Germany

出版信息

J Cell Sci. 2019 Jan 3;132(1):jcs222893. doi: 10.1242/jcs.222893.

Abstract

Junction dynamics of endothelial cells are based on the integration of signal transduction, cytoskeletal remodeling and contraction, which are necessary for the formation and maintenance of monolayer integrity, but also enable repair and regeneration. The VE-cadherin-catenin complex forms the molecular basis of the adherence junctions and cooperates closely with actin filaments. Several groups have recently described small actin-driven protrusions at the cell junctions that are controlled by the Arp2/3 complex, contributing to cell junction regulation. We identified these protrusions as the driving force for VE-cadherin dynamics, as they directly induce new VE-cadherin-mediated adhesion sites, and have accordingly referred to these structures as junction-associated intermittent lamellipodia (JAIL). JAIL extend over only a few microns and thus provide the basis for a subcellular regulation of adhesion. The local (subcellular) VE-cadherin concentration and JAIL formation are directly interdependent, which enables autoregulation. Therefore, this mechanism can contribute a subcellularly regulated adaptation of cell contact dynamics, and is therefore of great importance for monolayer integrity and relative cell migration during wound healing and angiogenesis, as well as for inflammatory responses. In this Review, we discuss the mechanisms and functions underlying these actin-driven protrusions and consider their contribution to the dynamic regulation of endothelial cell junctions.

摘要

内皮细胞的连接动力学基于信号转导、细胞骨架重塑和收缩的整合,这对于单层完整性的形成和维持是必要的,但也使修复和再生成为可能。VE-钙黏蛋白-连环蛋白复合物形成黏附连接的分子基础,并与肌动蛋白丝密切合作。最近有几个小组描述了细胞连接处由 Arp2/3 复合物控制的小肌动蛋白驱动的突起,这些突起有助于细胞连接的调节。我们将这些突起鉴定为 VE-钙黏蛋白动力学的驱动力,因为它们直接诱导新的 VE-钙黏蛋白介导的黏附位点,因此我们将这些结构称为连接相关的间歇性片状伪足(JAIL)。JAIL 仅延伸数微米,因此为黏附的亚细胞调节提供了基础。局部(亚细胞)VE-钙黏蛋白浓度和 JAIL 的形成直接相互依赖,从而实现自动调节。因此,这种机制可以为细胞接触动力学的亚细胞调节做出贡献,因此对于单层完整性以及在伤口愈合和血管生成过程中的相对细胞迁移以及炎症反应非常重要。在这篇综述中,我们讨论了这些肌动蛋白驱动的突起的机制和功能,并考虑了它们对内皮细胞连接的动态调节的贡献。

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