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β1整合素依赖性细胞与细胞外基质蛋白的黏附对单核细胞样细胞上纤溶酶原受体表达的调节。

Regulation of plasminogen receptor expression on monocytoid cells by beta1-integrin-dependent cellular adherence to extracellular matrix proteins.

作者信息

Kim S O, Plow E F, Miles L A

机构信息

The Scripps Research Institute, Department of Vascular Biology (VB-1), La Jolla, California 92037, USA.

出版信息

J Biol Chem. 1996 Sep 27;271(39):23761-7. doi: 10.1074/jbc.271.39.23761.

Abstract

Plasminogen binding sites function to arm cell surfaces with the proteolytic activity of plasmin, critical for degradation of extracellular matrices. We have assessed the effects of adhesion of the representative monocytoid cell lines, THP-1 and U937, to purified extracellular matrix proteins on their expression of plasminogen receptors. After adhesion to immobilized fibronectin, adherent and nonadherent subpopulations of cells were separated. Plasminogen binding to the nonadherent population of cells increased 3-fold, whereas binding to the adherent population decreased by 60%. These changes were due to differences in the plasminogen binding capacities of the cells, while the affinities of the cells for plasminogen were unchanged. The up-regulation of receptor expression in the nonadherent cell population was: 1) induced rapidly and reversibly, 2) independent of new protein synthesis, 3) required an interaction between adherent and nonadherent cell populations, and 4) associated with an enhanced ability of the cells to promote plasminogen activation and to degrade fibronectin. Other immobilized adhesive proteins, laminin and vitronectin, also supported up-regulation of plasminogen receptors in the nonadherent cells. Carboxypeptidase B treatment eliminated the increment in the plasminogen binding capacity of the nonadherent cells, suggesting that the increase in binding was due to exposure of new carboxyl-terminal lysyl residues on the cell surfaces. Furthermore, both the adherence of the cells and up-regulation of plasminogen binding sites was abolished by beta1-integrin monoclonal antibodies. These results suggest that proteins found in extracellular matrices have the capacity to modulate the expression of plasminogen binding sites, thus regulating local proteolysis and cell migration.

摘要

纤溶酶原结合位点的功能是使细胞表面具备纤溶酶的蛋白水解活性,这对于细胞外基质的降解至关重要。我们评估了代表性单核细胞系THP-1和U937与纯化的细胞外基质蛋白黏附对其纤溶酶原受体表达的影响。细胞黏附于固定化纤连蛋白后,分离出黏附细胞亚群和非黏附细胞亚群。纤溶酶原与非黏附细胞群体的结合增加了3倍,而与黏附细胞群体的结合减少了60%。这些变化是由于细胞纤溶酶原结合能力的差异,而细胞对纤溶酶原的亲和力未改变。非黏附细胞群体中受体表达的上调表现为:1)快速且可逆地诱导;2)不依赖新蛋白质合成;3)需要黏附细胞群体与非黏附细胞群体之间相互作用;4)与细胞促进纤溶酶原激活和降解纤连蛋白的能力增强相关。其他固定化黏附蛋白,如层粘连蛋白和玻连蛋白,也支持非黏附细胞中纤溶酶原受体的上调。羧肽酶B处理消除了非黏附细胞纤溶酶原结合能力的增加,表明结合增加是由于细胞表面新的羧基末端赖氨酰残基暴露所致。此外,β1整合素单克隆抗体消除了细胞的黏附以及纤溶酶原结合位点的上调。这些结果表明,细胞外基质中的蛋白质具有调节纤溶酶原结合位点表达的能力,从而调节局部蛋白水解和细胞迁移。

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