Pepper M S, Sappino A P, Stöcklin R, Montesano R, Orci L, Vassalli J D
Institute of Histology and Embryology, University of Geneva Medical Center, Switzerland.
J Cell Biol. 1993 Aug;122(3):673-84. doi: 10.1083/jcb.122.3.673.
One of the phenotypic hallmarks of migrating endothelial cells, both in vivo and in vitro, is expression of the urokinase-type plasminogen activator (u-PA), a key mediator of extracellular proteolysis. In the study reported here, we have used an in vitro model of endothelial cell migration to explore the mechanism of this phenomenon. We have found that wounding of an endothelial cell monolayer triggers a marked, rapid and sustained increase in expression of a specific high-affinity receptor for u-PA (u-PAr) on the surface of migrating cells. Migrating cells displayed an increase in the levels of u-PA and u-PAr mRNAs, and this increase was mediated by endogenous basic fibroblast growth factor (bFGF). We also show that the increase in u-PA activity on migrating cells can be accounted for by an increase in receptor-bound u-PA, and that the increase in activity is also dependent on endogenous bFGF. These results demonstrate that the expression of plasmin-mediated proteolytic activity by migrating endothelial cells is a consequence of increased production of both u-PA and its receptor, and that this in turn is mediated by endogenous bFGF. This suggests that u-PA, produced at increased levels by migrating cells, binds to u-PAr whose expression is upregulated on the same cells. These observations are in accord with the postulated role of u-PAr in mediating efficient and spatially restricted extracellular proteolysis, particularly in the context of cell migration.
在体内和体外,迁移中的内皮细胞的一个表型特征是尿激酶型纤溶酶原激活剂(u-PA)的表达,它是细胞外蛋白水解的关键介质。在本文报道的研究中,我们使用了内皮细胞迁移的体外模型来探究这一现象的机制。我们发现,内皮细胞单层损伤会引发迁移细胞表面u-PA特异性高亲和力受体(u-PAr)表达的显著、快速且持续的增加。迁移细胞中u-PA和u-PAr mRNA水平升高,这种升高是由内源性碱性成纤维细胞生长因子(bFGF)介导的。我们还表明,迁移细胞上u-PA活性的增加可归因于受体结合型u-PA的增加,并且活性的增加也依赖于内源性bFGF。这些结果表明,迁移中的内皮细胞纤溶酶介导的蛋白水解活性的表达是u-PA及其受体产量增加的结果,而这反过来又由内源性bFGF介导。这表明迁移细胞产生的水平升高的u-PA与在同一细胞上表达上调的u-PAr结合。这些观察结果与u-PAr在介导高效且空间受限的细胞外蛋白水解中的假定作用一致,特别是在细胞迁移的背景下。