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Syndecan-4聚集以PDZ依赖的方式诱导细胞迁移。

Syndecan-4 clustering induces cell migration in a PDZ-dependent manner.

作者信息

Tkachenko Eugene, Elfenbein Arye, Tirziu Daniela, Simons Michael

机构信息

Angiogenesis Research Center, Department of Medicine, Dartmouth Medical School, Lebanon, NH 03756, USA.

出版信息

Circ Res. 2006 Jun 9;98(11):1398-404. doi: 10.1161/01.RES.0000225283.71490.5a. Epub 2006 May 4.

Abstract

Cell migration is a dynamic process involving formation of a leading edge in the direction of migration and adhesion points from which tension is generated to move the cell body forward. At the same time, disassembly of adhesion points occurs at the back of the cell, a region known as the trailing edge. Syndecan-4 (S4) is a transmembrane proteoglycan thought to be involved in the formation of focal adhesions. Recent studies have shown that its cytoplasmic domain can engage in signal transduction, making S4 a bona fide receptor. Here, we show that ligand clustering of cell surface S4 on endothelial cells initiates a signaling cascade that results in activation of Rac1, induction of cell polarization, and stimulation of cell migration that depends on S4 interaction with its PDZ-binding partner. Expression of an S4 mutant lacking its PDZ-binding region (S4-PDZ(-)) leads to decreased cell motility and a failure to form a trailing edge. On clustering S4, but not S4-PDZ(-), targets activated Rac1 to the leading edge of live cells. Cells lacking synectin, a PDZ domain containing protein that interacts with S4, fail to migrate in response to S4 clustering. Both S4-PDZ(-)-expressing and synectin(-/-) endothelial cells exhibit elevated basal levels of Rac1. Thus, our data suggest that S4 promotes endothelial cell migration in response to ligand binding by activating Rac1 and localizing it to the leading edge, and that these processes are dependent on its PDZ-binding domain interaction with synectin.

摘要

细胞迁移是一个动态过程,涉及在迁移方向上形成前沿以及产生张力以推动细胞体向前移动的粘附点。与此同时,粘附点在细胞后部(即所谓的后缘区域)发生解离。Syndecan-4(S4)是一种跨膜蛋白聚糖,被认为参与粘着斑的形成。最近的研究表明,其胞质结构域可参与信号转导,使S4成为一种真正的受体。在此,我们表明内皮细胞表面S4的配体聚集引发信号级联反应,导致Rac1激活、细胞极化诱导以及细胞迁移刺激,这取决于S4与其PDZ结合伴侣的相互作用。缺乏其PDZ结合区域的S4突变体(S4-PDZ(-))的表达导致细胞运动性降低且无法形成后缘。在聚集S4而非S4-PDZ(-)时,可将激活的Rac1靶向活细胞的前沿。缺乏synectin(一种与S4相互作用的含PDZ结构域的蛋白质)的细胞在响应S4聚集时无法迁移。表达S4-PDZ(-)的内皮细胞和synectin(-/-)内皮细胞均表现出Rac1基础水平升高。因此,我们的数据表明,S4通过激活Rac1并将其定位到前沿来促进内皮细胞对配体结合的迁移反应,并且这些过程依赖于其与synectin的PDZ结合结构域相互作用。

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