TY - JOUR
T1 - Plasminogen activator inhibitor-1 represses integrin-and vitronectin- mediated cell migration independently of its function as an inhibitor of plasminogen activation
AU - Kjøller, Lars
AU - Kanse, Sandip M.
AU - Kirkegaard, Tove
AU - Rodenburg, Kees W.
AU - Rønne, Ebbe
AU - Goodman, Simon L.
AU - Preissner, Klaus T.
AU - Ossowski, Lilliana
AU - Andreasen, Peter A.
N1 - Funding Information:
The authors acknowledge the skillful technical assistance of Lissy Nielsen and Barbara Yutzy and the FACS analysis performed by Dr. Matthias Germer. The work was supported by the Danish Cancer Society, the Danish Medical Research Council, the Danish Biotechnology Programme, and the Novo-Nordisk Foundation (grants to P.A.A.); by U.S. Public Health Service Research Grant CA-40758 (to L.O.); by Deutsche Forschungsgemeinschaft and the German Ministry of Science and Technology (grants to K.T.P.); and by Merck KGaA (S.L.G.).
PY - 1997/5/1
Y1 - 1997/5/1
N2 - Cell migration involves the integrins, their extracellular matrix ligands, and pericellular proteolytic enzyme systems. We have studied the role of plasminogen activator inhibitor-1 (PAI-1) in cell migration, using human amnion WISH cells and human epidermoid carcinoma HEp-2 cells in an assay measuring migration from microcarrier beads and a modified Boyden- chamber assay. Active, but not latent or reactive centercleaved, PAI-1 inhibited migration. A PAI-1 mutant without ability to inhibit plasminogen activation was as active as wild-type PAI-1 as a migration inhibitor, showing that inhibition of plasminogen activation was not involved. PAI-1 specifically interfered with integrin- and vitronectin-mediated migration: Migration onto vitronectin-coated but not onto fibronectin-coated surfaces was inhibited by PAI-1, a cyclic RGD peptide inhibited migration, and both cell lines expressed vitronectin-binding α(V)-integrins. In addition, active PAI-1, but not latent or reactive center-cleaved PAI-1, inhibited vitronectin binding to integrins in an in vitro binding assay, without affecting binding of fibronectin. Monoclonal antibodies against the urokinase receptor, another vitronectin binding protein, did not affect cell migration in the beads assay, while some inhibitory effect was observed in the Boyden-chamber assay. We conclude that PAI-1, independently of its role as a proteinase inhibitor, inhibits cell migration by competing for vitronectin binding to integrins, while the interference of PAI-1 with binding of vitronectin to the urokinase receptor may play a secondary role. These data define a novel function for the serpin PAI-1, enabling it to regulate cell migration over vitronectin-rich extracellular matrix in the body.
AB - Cell migration involves the integrins, their extracellular matrix ligands, and pericellular proteolytic enzyme systems. We have studied the role of plasminogen activator inhibitor-1 (PAI-1) in cell migration, using human amnion WISH cells and human epidermoid carcinoma HEp-2 cells in an assay measuring migration from microcarrier beads and a modified Boyden- chamber assay. Active, but not latent or reactive centercleaved, PAI-1 inhibited migration. A PAI-1 mutant without ability to inhibit plasminogen activation was as active as wild-type PAI-1 as a migration inhibitor, showing that inhibition of plasminogen activation was not involved. PAI-1 specifically interfered with integrin- and vitronectin-mediated migration: Migration onto vitronectin-coated but not onto fibronectin-coated surfaces was inhibited by PAI-1, a cyclic RGD peptide inhibited migration, and both cell lines expressed vitronectin-binding α(V)-integrins. In addition, active PAI-1, but not latent or reactive center-cleaved PAI-1, inhibited vitronectin binding to integrins in an in vitro binding assay, without affecting binding of fibronectin. Monoclonal antibodies against the urokinase receptor, another vitronectin binding protein, did not affect cell migration in the beads assay, while some inhibitory effect was observed in the Boyden-chamber assay. We conclude that PAI-1, independently of its role as a proteinase inhibitor, inhibits cell migration by competing for vitronectin binding to integrins, while the interference of PAI-1 with binding of vitronectin to the urokinase receptor may play a secondary role. These data define a novel function for the serpin PAI-1, enabling it to regulate cell migration over vitronectin-rich extracellular matrix in the body.
UR - https://www.scopus.com/pages/publications/0000124642
U2 - 10.1006/excr.1997.3540
DO - 10.1006/excr.1997.3540
M3 - Article
C2 - 9168821
AN - SCOPUS:0000124642
SN - 0014-4827
VL - 232
SP - 420
EP - 429
JO - Experimental Cell Research
JF - Experimental Cell Research
IS - 2
ER -