Rao N K, Shi G P, Chapman H A
Division of Biological Sciences, Harvard School of Public Health, Boston, Massachusetts, USA.
J Clin Invest. 1995 Jul;96(1):465-74. doi: 10.1172/JCI118057.
Binding of urokinase to the glycolipid-anchored urokinase receptor (uPAR) has been implicated in macrophage differentiation. However, no biochemical markers of differentiation have yet been directly linked to uPAR occupancy. As extensive changes in proteolytic profile characterize monocytic differentiation, we have examined the role of uPAR occupancy on protease expression by differentiating phagocytes. Antibodies to either urokinase or to uPAR that prevent receptor binding inhibited induction of cathepsin B in cultured monocytes and both cathepsin B and 92-kD gelatinase mRNA and protein in phorbol diester-stimulated myeloid cells. Mannosamine, an inhibitor of glycolipid anchor assembly, also blocked protease expression. Anti-catalytic urokinase antibodies, excess inactive urokinase, or aprotinin had no effect, indicating that receptor occupancy per se regulated protease expression. Antibodies to the integrins CD11a and CD29 or to the glycolipid-anchored proteins CD14 and CD55 also had no effect. Protease induction was independent of matrix attachment. Antibodies to urokinase or uPAR affected neither the decrease in cathepsin G nor the increase in tumor necrosis factor-alpha in phorbol ester-stimulated cells. These data establish that uPAR is a multifunctional receptor, not only promoting pericellular proteolysis and matrix attachment, but also effecting cysteine- and metallo-protease expression during macrophage differentiation.
尿激酶与糖脂锚定的尿激酶受体(uPAR)的结合与巨噬细胞分化有关。然而,尚未有分化的生化标志物与uPAR占据直接相关。由于蛋白水解谱的广泛变化是单核细胞分化的特征,我们研究了uPAR占据对分化中的吞噬细胞蛋白酶表达的作用。针对尿激酶或uPAR的抗体,若能阻止受体结合,则会抑制培养单核细胞中组织蛋白酶B的诱导,以及佛波酯刺激的髓样细胞中组织蛋白酶B和92-kD明胶酶的mRNA及蛋白表达。甘露糖胺是糖脂锚组装的抑制剂,也能阻断蛋白酶表达。抗催化性尿激酶抗体、过量的无活性尿激酶或抑肽酶均无作用,表明受体占据本身调节蛋白酶表达。整合素CD11a和CD29的抗体或糖脂锚定蛋白CD14和CD55的抗体也无作用。蛋白酶诱导与基质附着无关。尿激酶或uPAR的抗体对佛波酯刺激细胞中组织蛋白酶G的减少或肿瘤坏死因子-α的增加均无影响。这些数据表明uPAR是一种多功能受体,不仅促进细胞周围蛋白水解和基质附着,还在巨噬细胞分化过程中影响半胱氨酸和金属蛋白酶的表达。