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通过尿激酶连接肽区域与αvβ5整合素之间的新型相互作用激活尿激酶受体。

Activation of urokinase receptor by a novel interaction between the connecting peptide region of urokinase and alpha v beta 5 integrin.

作者信息

Franco Paola, Vocca Immacolata, Carriero Maria V, Alfano Daniela, Cito Letizia, Longanesi-Cattani Immacolata, Grieco Paolo, Ossowski Liliana, Stoppelli Maria P

机构信息

Institute of Genetics and Biophysics Adriano Buzzati-Traverso, National Research Council, Via P. Castellino 111, 80131 Naples, Italy.

出版信息

J Cell Sci. 2006 Aug 15;119(Pt 16):3424-34. doi: 10.1242/jcs.03067. Epub 2006 Aug 1.

Abstract

The serine protease urokinase (uPA) binds to the urokinase receptor (uPAR) through its growth-factor domain (GFD, residues 1-49), affecting cell migration, adhesion and growth. Here, we show that uPA can promote cytoskeletal rearrangements and directional cell migration in a GFD-independent manner, through a new and specific interaction between an internal uPA domain coined ;connecting peptide' (residues 132-158) and cell-surface integrin alpha v beta 5. Remarkably, a peptide corresponding to this region (CPp, residues 135-158) retains the ability to bind to alpha v beta 5, eliciting cytoskeletal rearrangements and directing cell migration at a concentration as low as 1-10 pM. These effects are lost in cells not expressing uPAR, indicating that the uPAR is required for CPp-dependent signaling. Furthermore, the CPp-alpha v beta 5-integrin interaction enhances F-actin-enriched protrusions and cell migration induced by the well-established interaction between the uPAR-binding peptide (GFDp, residues 12-32) of uPA and uPAR. These results provide new insight into the function of uPA, which--through individual domains--can engage two different surface receptors (uPAR and alpha v beta 5 integrin), thus initiating and potentiating intracellular signaling and migration.

摘要

丝氨酸蛋白酶尿激酶(uPA)通过其生长因子结构域(GFD,第1至49位氨基酸残基)与尿激酶受体(uPAR)结合,影响细胞迁移、黏附和生长。在此,我们表明,uPA可通过一个新的、特定的相互作用,以不依赖GFD的方式促进细胞骨架重排和细胞定向迁移,该相互作用发生在一个被称为“连接肽”的uPA内部结构域(第132至158位氨基酸残基)与细胞表面整合素αvβ5之间。值得注意的是,对应于该区域的肽段(CPp,第135至158位氨基酸残基)保留了与αvβ5结合的能力,在低至1 - 10 pM的浓度下即可引发细胞骨架重排并指导细胞迁移。在不表达uPAR的细胞中,这些效应消失,表明uPAR是CPp依赖信号传导所必需的。此外,CPp - αvβ5 - 整合素相互作用增强了由uPA的uPAR结合肽段(GFDp,第12至32位氨基酸残基)与uPAR之间已确定的相互作用所诱导的富含F - 肌动蛋白的突起和细胞迁移。这些结果为uPA的功能提供了新的见解,即uPA可通过不同的结构域与两种不同的表面受体(uPAR和αvβ5整合素)结合,从而启动并增强细胞内信号传导和迁移。

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