Cao D, Mizukami I F, Garni-Wagner B A, Kindzelskii A L, Todd R F, Boxer L A, Petty H R
Department of Biological Sciences, Wayne State University, Detroit, MI 48202.
J Immunol. 1995 Feb 15;154(4):1817-29.
Urokinase-type plasminogen activator (uPA), which binds to cells via a specific receptor (uPAR), participates in pericellular proteolysis during leukocyte migration. Previous studies have indicated that uPAR is physically associated with CR3 (CD11b/CD18). To test the functional interactions of CR3 and uPAR, we have examined the ability of uPA to elicit changes in cytosolic calcium levels of normal neutrophils, neutrophils from a leukocyte adhesion deficiency (LAD) patient, and 3T3 transfectants expressing CR3, uPAR, or both. We found that calcium levels of neutrophils increased from 106 +/- 6 nM in untreated cells to 199 +/- 25 nM in the presence of uPA. In contrast, no significant change in calcium was observed when neutrophils from an leukocyte adhesion deficiency patient were examined. The uPA-dependent calcium rise was inhibited by mAb directed against either CR3 or uPAR and required intact uPA. To substantiate further these findings, we prepared transfectants expressing genes encoding uPAR, CR3, and both receptors; only cells expressing both receptors experienced a rise in intracellular calcium. Although uPA's calcium signal is insufficient to trigger superoxide production, FMLP dose-dependent superoxide production was greatly enhanced by incubating neutrophils with intact, but not fragmented, uPA. Flow cytometry experiments utilizing an FMLP analogue exclude the possibilities that urokinase binds to the FMLP receptor or up-regulates its expression. We suggest that calcium is a second messenger of uPA, that this message is mediated in a CR3-dependent fashion, and that this signal primes neutrophils for superoxide production.
尿激酶型纤溶酶原激活剂(uPA)通过特异性受体(uPAR)与细胞结合,在白细胞迁移过程中参与细胞周围的蛋白水解作用。先前的研究表明,uPAR与CR3(CD11b/CD18)存在物理关联。为了测试CR3和uPAR的功能相互作用,我们检测了uPA引发正常中性粒细胞、白细胞黏附缺陷(LAD)患者的中性粒细胞以及表达CR3、uPAR或两者的3T3转染细胞胞质钙水平变化的能力。我们发现,在未处理的细胞中,中性粒细胞的钙水平为106±6 nM,而在存在uPA的情况下则升至199±25 nM。相比之下,检测白细胞黏附缺陷患者的中性粒细胞时,未观察到钙的显著变化。针对CR3或uPAR的单克隆抗体可抑制uPA依赖性的钙升高,且这需要完整的uPA。为了进一步证实这些发现,我们制备了表达编码uPAR、CR3和两种受体基因的转染细胞;只有同时表达两种受体的细胞胞内钙才会升高。尽管uPA的钙信号不足以触发超氧化物的产生,但用完整而非片段化的uPA孵育中性粒细胞可大大增强FMLP剂量依赖性的超氧化物产生。利用FMLP类似物进行的流式细胞术实验排除了尿激酶与FMLP受体结合或上调其表达的可能性。我们认为钙是uPA的第二信使,该信号以CR3依赖性方式介导,并且此信号使中性粒细胞为超氧化物的产生做好准备。