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连接黏附分子A的表达可防止自发和随机运动。

Expression of junctional adhesion molecule-A prevents spontaneous and random motility.

作者信息

Bazzoni Gianfranco, Tonetti Paolo, Manzi Luca, Cera Maria R, Balconi Giovanna, Dejana Elisabetta

机构信息

Laboratory of Systems Biology, Department of Immunology and Cell Biology, Istituto di Ricerche Farmacologiche Mario Negri, 20157 Milano, Italy.

出版信息

J Cell Sci. 2005 Feb 1;118(Pt 3):623-32. doi: 10.1242/jcs.01661. Epub 2005 Jan 18.

Abstract

Junctional adhesion molecule-A (JAM-A) is a cell-surface glycoprotein that localizes to intercellular junctions and associates with intracellular proteins via PSD95-Dlg-ZO1-binding residues. To define the functional consequences of JAM-A expression, we have produced endothelial cells from JAM-A-deficient mice. We report here that the absence of JAM-A enhanced spontaneous and random motility. In turn, the enhanced motility of JAM-A-negative cells was abrogated either on transfection of exogenous JAM-A or on treatment with inhibitors of glycogen synthase kinase-3beta (GSK-3beta). In addition, in JAM-A-positive cells, motility was enhanced on inactivation of protein kinase Czeta (PKCzeta), which is an inhibitor of GSK-3beta. Although these findings suggested that JAM-A might inhibit GSK-3beta, we found that expression per se of JAM-A did not change the levels of inactive GSK-3beta. Thus, JAM-A expression may regulate effectors of motility that are also downstream of the PKCzeta/GSK-3beta axis. In support of this view, we found that JAM-A absence increased the number of actin-containing protrusions, reduced the stability of microtubules and impaired the formation of focal adhesions. Notably, all the functional consequences of JAM-A absence were reversed either on treatment with GSK-3beta inhibitors or on transfection of full-length JAM-A, but not on transfection of a JAM-A deletion mutant devoid of the PSD95-Dlg-ZO1-binding residues. Thus, by regulating cytoskeletal and adhesive structures, JAM-A expression prevents cell motility, probably in a PSD95-Dlg-ZO1-dependent manner.

摘要

连接粘附分子A(JAM-A)是一种细胞表面糖蛋白,定位于细胞间连接,并通过PSD95-Dlg-ZO1结合残基与细胞内蛋白质结合。为了确定JAM-A表达的功能后果,我们从JAM-A缺陷小鼠中制备了内皮细胞。我们在此报告,JAM-A的缺失增强了自发和随机运动性。反过来,外源性JAM-A转染或用糖原合酶激酶-3β(GSK-3β)抑制剂处理后,JAM-A阴性细胞增强的运动性被消除。此外,在JAM-A阳性细胞中,蛋白激酶Cζ(PKCζ)失活时运动性增强,PKCζ是GSK-3β的抑制剂。尽管这些发现表明JAM-A可能抑制GSK-3β,但我们发现JAM-A本身的表达并没有改变无活性GSK-3β的水平。因此,JAM-A的表达可能调节也是PKCζ/GSK-3β轴下游的运动效应器。支持这一观点的是,我们发现JAM-A的缺失增加了含肌动蛋白突起的数量,降低了微管的稳定性,并损害了粘着斑的形成。值得注意的是,JAM-A缺失的所有功能后果在用GSK-3β抑制剂处理或全长JAM-A转染后都被逆转,但在缺乏PSD95-Dlg-ZO1结合残基的JAM-A缺失突变体转染后没有逆转。因此,通过调节细胞骨架和粘附结构,JAM-A的表达可能以PSD95-Dlg-ZO1依赖的方式阻止细胞运动。

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