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Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule

Vascular adhesion protein 1 (VAP-1) is a human endothelial sialoglycoprotein whose cell surface expression is induced under inflammatory conditions. It has been shown previously to participate in lymphocyte recirculation by mediating the binding of lymphocytes to peripheral lymph node vascular endot...

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Detalles Bibliográficos
Autores principales: Smith, David J., Salmi, Marko, Bono, Petri, Hellman, Jukka, Leu, Taina, Jalkanen, Sirpa
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1998
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2525535/
https://www.ncbi.nlm.nih.gov/pubmed/9653080
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author Smith, David J.
Salmi, Marko
Bono, Petri
Hellman, Jukka
Leu, Taina
Jalkanen, Sirpa
author_facet Smith, David J.
Salmi, Marko
Bono, Petri
Hellman, Jukka
Leu, Taina
Jalkanen, Sirpa
author_sort Smith, David J.
collection PubMed
description Vascular adhesion protein 1 (VAP-1) is a human endothelial sialoglycoprotein whose cell surface expression is induced under inflammatory conditions. It has been shown previously to participate in lymphocyte recirculation by mediating the binding of lymphocytes to peripheral lymph node vascular endothelial cells in an L-selectin–independent fashion. We report here that the VAP-1 cDNA encodes a type II transmembrane protein of 84.6 kD with a single transmembrane domain located at the NH(2)-terminal end of the molecule and six potential N-glycosylation sites in the extracellular domain. In vivo, the protein exists predominantly as a homodimer of 170–180 kD. Ax endothelial cells transfected with a VAP-1 cDNA express VAP-1 on their cell surface and bind lymphocytes, and the binding can be partially inhibited with anti–VAP-1 mAbs. VAP-1 has no similarity to any currently known adhesion molecules, but has significant identity to the copper-containing amine oxidase family and has a monoamine oxidase activity. We propose that VAP-1 is a novel type of adhesion molecule with dual function. With the appropriate glycosylation and in the correct inflammatory setting, its expression on the lumenal endothelial cell surface allows it to mediate lymphocyte adhesion and to function as an adhesion receptor involved in lymphocyte recirculation. Its primary function in other locations where it is expressed, such as smooth muscle, may depend on its inherent monoamine oxidase activity.
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spelling pubmed-25255352008-08-27 Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule Smith, David J. Salmi, Marko Bono, Petri Hellman, Jukka Leu, Taina Jalkanen, Sirpa J Exp Med Articles Vascular adhesion protein 1 (VAP-1) is a human endothelial sialoglycoprotein whose cell surface expression is induced under inflammatory conditions. It has been shown previously to participate in lymphocyte recirculation by mediating the binding of lymphocytes to peripheral lymph node vascular endothelial cells in an L-selectin–independent fashion. We report here that the VAP-1 cDNA encodes a type II transmembrane protein of 84.6 kD with a single transmembrane domain located at the NH(2)-terminal end of the molecule and six potential N-glycosylation sites in the extracellular domain. In vivo, the protein exists predominantly as a homodimer of 170–180 kD. Ax endothelial cells transfected with a VAP-1 cDNA express VAP-1 on their cell surface and bind lymphocytes, and the binding can be partially inhibited with anti–VAP-1 mAbs. VAP-1 has no similarity to any currently known adhesion molecules, but has significant identity to the copper-containing amine oxidase family and has a monoamine oxidase activity. We propose that VAP-1 is a novel type of adhesion molecule with dual function. With the appropriate glycosylation and in the correct inflammatory setting, its expression on the lumenal endothelial cell surface allows it to mediate lymphocyte adhesion and to function as an adhesion receptor involved in lymphocyte recirculation. Its primary function in other locations where it is expressed, such as smooth muscle, may depend on its inherent monoamine oxidase activity. The Rockefeller University Press 1998-07-01 /pmc/articles/PMC2525535/ /pubmed/9653080 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 Articles
Smith, David J.
Salmi, Marko
Bono, Petri
Hellman, Jukka
Leu, Taina
Jalkanen, Sirpa
Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule
title Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule
title_full Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule
title_fullStr Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule
title_full_unstemmed Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule
title_short Cloning of  Vascular Adhesion Protein 1 Reveals a Novel Multifunctional Adhesion Molecule
title_sort cloning of  vascular adhesion protein 1 reveals a novel multifunctional adhesion molecule
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2525535/
https://www.ncbi.nlm.nih.gov/pubmed/9653080
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