Literature DB >> 9341144

Regulation of single chain urokinase binding, internalization, and degradation by a plasminogen activator inhibitor 1-derived peptide.

L Zhang1, D K Strickland, D B Cines, A A Higazi.   

Abstract

The internalization and degradation of cell-associated urokinase type plasminogen activator (uPA) through the alpha2-macroglobulin receptor/low density lipoprotein-related receptor (alpha2MR/LRP) represent important steps in the control of plasmin formation. Complexes between two chain urokinase (tcuPA) and plasminogen activator type 1 are degraded rapidly whereas single chain urokinase (scuPA) is not, suggesting that alpha2MR/LRP requires specific epitopes in the serpin for effective function. We report an alternative mechanism that may contribute to this process. The binding of scuPA to LM-TK- cells that lack the uPA receptor was stimulated by the hexapeptide EEIIMD, corresponding to amino acids 350-355 of plasminogen activator type 1, which contacts the sequence RHRGGS, corresponding to amino acids 179-184 in uPA. EEIIMD increased the Bmax of scuPA binding 4-fold with the half-maximal effect achieved at a peptide concentration of 50 microM. Stimulation was dependent on the charge on the COOH-terminal amino acid but not on the NH2 terminus of the peptide. EEIIMD also stimulated the internalization and degradation of scuPA. Both the binding and internalization of scuPA in the presence of EEIIMD were blocked by recombinant, 39-kDa alpha2MR/LRP-associated protein as well as by an anti-alpha2MR/LRP antibody. EEIIMD also stimulated the binding of scuPA to purified alpha2MR/LRP. EEIIMD had no effect on the binding of tcuPA or of complexes between scuPA and its receptor. These results suggest that EEIIMD regulates the binding of scuPA with alpha2MR/LRP. These findings also suggest a potential mechanism by which scuPA can be cleared which is independent of activation by plasmin or binding to uPA receptor.

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Year:  1997        PMID: 9341144     DOI: 10.1074/jbc.272.43.27053

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  9 in total

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2.  Urokinase plasminogen activator regulates pulmonary arterial contractility and vascular permeability in mice.

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3.  Lipoprotein receptor-related protein 1 regulates collagen 1 expression, proteolysis, and migration in human pleural mesothelial cells.

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Review 4.  Advanced drug delivery systems for antithrombotic agents.

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Authors:  Sergei Zaitsev; Dirk Spitzer; Juan-Carlos Murciano; Bi-Sen Ding; Samira Tliba; M Anna Kowalska; Oscar A Marcos-Contreras; Alice Kuo; Victoria Stepanova; John P Atkinson; Mortimer Poncz; Douglas B Cines; Vladimir R Muzykantov
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7.  Targeting plasminogen activator inhibitor-1 in tetracycline-induced pleural injury in rabbits.

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Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2017-08-31       Impact factor: 5.464

8.  Soluble urokinase receptor conjugated to carrier red blood cells binds latent pro-urokinase and alters its functional profile.

Authors:  Juan-Carlos Murciano; Abd Al-Roof Higazi; Douglas B Cines; Vladimir R Muzykantov
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9.  Regulation of airway contractility by plasminogen activators through N-methyl-D-aspartate receptor-1.

Authors:  Taher Nassar; Serge Yarovoi; Rami Abu Fanne; Sa'ed Akkawi; Mahmud Jammal; Timothy Craig Allen; Steven Idell; Douglas B Cines; Abd Al-Roof Higazi
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  9 in total

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