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Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility

Serine phosphorylation of human pro-urokinase (pro-uPA) by A431 human carcinoma cells results in a catalytically active molecule with reduced sensitivity to plasminogen activator inhibitor type 1. We mapped the phosphorylated seryl residues by analyzing the in vivo phosphorylation state of engineere...

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Autores principales: Franco, Paola, Iaccarino, Ciro, Chiaradonna, Ferdinando, Brandazza, Anna, Iavarone, Carlo, Mastronicola, M. Rosaria, Nolli, M. Luisa, Stoppelli, M. Patrizia
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1997
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2139889/
https://www.ncbi.nlm.nih.gov/pubmed/9151681
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author Franco, Paola
Iaccarino, Ciro
Chiaradonna, Ferdinando
Brandazza, Anna
Iavarone, Carlo
Mastronicola, M. Rosaria
Nolli, M. Luisa
Stoppelli, M. Patrizia
author_facet Franco, Paola
Iaccarino, Ciro
Chiaradonna, Ferdinando
Brandazza, Anna
Iavarone, Carlo
Mastronicola, M. Rosaria
Nolli, M. Luisa
Stoppelli, M. Patrizia
author_sort Franco, Paola
collection PubMed
description Serine phosphorylation of human pro-urokinase (pro-uPA) by A431 human carcinoma cells results in a catalytically active molecule with reduced sensitivity to plasminogen activator inhibitor type 1. We mapped the phosphorylated seryl residues by analyzing the in vivo phosphorylation state of engineered prouPA variants carrying a COOH-terminal poly-histidine tag. Stably transfected A431 cells do not incorporate radioactive phosphate into tagged pro-uPA in which the serines 138 and 303 have been replaced with glutamic residues, although endogenous nontagged pro-uPA is (32)P-labeled on A and B chains. Moreover, the catalyticindependent ability of the mono- and di-substituted “phosphorylation-like” variants to bind to the GPIanchored urokinase receptor (uPAR) and promote adherence of differentiating U937, HL-60, and THP-1 myelomonocytic cells was examined. We found that glutamic residues as well as the naturally occurring phosphoserines at positions 138 and 303 abolish proadhesive ability, although they do not interfere with receptor binding. In addition, pro-uPA carrying Glu(138/303) lacks the capability to induce a chemotactic response of THP-1 cells. The exclusive presence of Glu(138) reduces pro-uPA proadhesive and chemotactic ability by 70– 80%, indicating that a phosphoserine residue at the same position plays a major inhibitory role of myeloid cell response to pro-urokinase. The di-substitution does not affect pro-uPA ability to interact with vitronectin or to enhance binding of urea-denatured vitronectin to uPAR. However, unlike wild-type tagged pro-uPA, the di-substituted variant does not induce receptor polarization in pre-adherent U937 cells. Taken together, the data support the possibility that pro-uPA phosphorylation on Ser(138/303) can modulate uPAR transducing ability.
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spelling pubmed-21398892008-05-01 Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility Franco, Paola Iaccarino, Ciro Chiaradonna, Ferdinando Brandazza, Anna Iavarone, Carlo Mastronicola, M. Rosaria Nolli, M. Luisa Stoppelli, M. Patrizia J Cell Biol Article Serine phosphorylation of human pro-urokinase (pro-uPA) by A431 human carcinoma cells results in a catalytically active molecule with reduced sensitivity to plasminogen activator inhibitor type 1. We mapped the phosphorylated seryl residues by analyzing the in vivo phosphorylation state of engineered prouPA variants carrying a COOH-terminal poly-histidine tag. Stably transfected A431 cells do not incorporate radioactive phosphate into tagged pro-uPA in which the serines 138 and 303 have been replaced with glutamic residues, although endogenous nontagged pro-uPA is (32)P-labeled on A and B chains. Moreover, the catalyticindependent ability of the mono- and di-substituted “phosphorylation-like” variants to bind to the GPIanchored urokinase receptor (uPAR) and promote adherence of differentiating U937, HL-60, and THP-1 myelomonocytic cells was examined. We found that glutamic residues as well as the naturally occurring phosphoserines at positions 138 and 303 abolish proadhesive ability, although they do not interfere with receptor binding. In addition, pro-uPA carrying Glu(138/303) lacks the capability to induce a chemotactic response of THP-1 cells. The exclusive presence of Glu(138) reduces pro-uPA proadhesive and chemotactic ability by 70– 80%, indicating that a phosphoserine residue at the same position plays a major inhibitory role of myeloid cell response to pro-urokinase. The di-substitution does not affect pro-uPA ability to interact with vitronectin or to enhance binding of urea-denatured vitronectin to uPAR. However, unlike wild-type tagged pro-uPA, the di-substituted variant does not induce receptor polarization in pre-adherent U937 cells. Taken together, the data support the possibility that pro-uPA phosphorylation on Ser(138/303) can modulate uPAR transducing ability. The Rockefeller University Press 1997-05-05 /pmc/articles/PMC2139889/ /pubmed/9151681 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Franco, Paola
Iaccarino, Ciro
Chiaradonna, Ferdinando
Brandazza, Anna
Iavarone, Carlo
Mastronicola, M. Rosaria
Nolli, M. Luisa
Stoppelli, M. Patrizia
Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility
title Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility
title_full Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility
title_fullStr Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility
title_full_unstemmed Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility
title_short Phosphorylation of Human Pro-Urokinase on Ser(138/303) Impairs Its Receptor-dependent Ability to Promote Myelomonocytic Adherence and Motility
title_sort phosphorylation of human pro-urokinase on ser(138/303) impairs its receptor-dependent ability to promote myelomonocytic adherence and motility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2139889/
https://www.ncbi.nlm.nih.gov/pubmed/9151681
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