Cargando…

Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow

Leukocyte migration into sites of inflammation involves multiple molecular interactions between leukocytes and vascular endothelial cells, mediating sequential leukocyte capture, rolling, and firm adhesion. In this study, we tested the role of molecular interactions between fractalkine (FKN), a tran...

Descripción completa

Detalles Bibliográficos
Autores principales: Fong, Alan M., Robinson, Lisa A., Steeber, Douglas A., Tedder, Thomas F., Yoshie, Osamu, Imai, Toshio, Patel, Dhavalkumar D.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1998
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213407/
https://www.ncbi.nlm.nih.gov/pubmed/9782118
_version_ 1782148888755437568
author Fong, Alan M.
Robinson, Lisa A.
Steeber, Douglas A.
Tedder, Thomas F.
Yoshie, Osamu
Imai, Toshio
Patel, Dhavalkumar D.
author_facet Fong, Alan M.
Robinson, Lisa A.
Steeber, Douglas A.
Tedder, Thomas F.
Yoshie, Osamu
Imai, Toshio
Patel, Dhavalkumar D.
author_sort Fong, Alan M.
collection PubMed
description Leukocyte migration into sites of inflammation involves multiple molecular interactions between leukocytes and vascular endothelial cells, mediating sequential leukocyte capture, rolling, and firm adhesion. In this study, we tested the role of molecular interactions between fractalkine (FKN), a transmembrane mucin-chemokine hybrid molecule expressed on activated endothelium, and its receptor (CX(3)CR1) in leukocyte capture, firm adhesion, and activation under physiologic flow conditions. Immobilized FKN fusion proteins captured resting peripheral blood mononuclear cells at physiologic wall shear stresses and induced firm adhesion of resting monocytes, resting and interleukin (IL)-2–activated CD8(+) T lymphocytes and IL-2–activated NK cells. FKN also induced cell shape change in firmly adherent monocytes and IL-2–activated lymphocytes. CX(3)CR1-transfected K562 cells, but not control K562 cells, firmly adhered to FKN-expressing ECV-304 cells (ECV-FKN) and tumor necrosis factor α–activated human umbilical vein endothelial cells. This firm adhesion was not inhibited by pertussis toxin, EDTA/EGTA, or antiintegrin antibodies, indicating that the firm adhesion was integrin independent. In summary, FKN mediated the rapid capture, integrin-independent firm adhesion, and activation of circulating leukocytes under flow. Thus, FKN and CX(3)CR1 mediate a novel pathway for leukocyte trafficking.
format Text
id pubmed-2213407
institution National Center for Biotechnology Information
language English
publishDate 1998
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-22134072008-04-16 Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow Fong, Alan M. Robinson, Lisa A. Steeber, Douglas A. Tedder, Thomas F. Yoshie, Osamu Imai, Toshio Patel, Dhavalkumar D. J Exp Med Articles Leukocyte migration into sites of inflammation involves multiple molecular interactions between leukocytes and vascular endothelial cells, mediating sequential leukocyte capture, rolling, and firm adhesion. In this study, we tested the role of molecular interactions between fractalkine (FKN), a transmembrane mucin-chemokine hybrid molecule expressed on activated endothelium, and its receptor (CX(3)CR1) in leukocyte capture, firm adhesion, and activation under physiologic flow conditions. Immobilized FKN fusion proteins captured resting peripheral blood mononuclear cells at physiologic wall shear stresses and induced firm adhesion of resting monocytes, resting and interleukin (IL)-2–activated CD8(+) T lymphocytes and IL-2–activated NK cells. FKN also induced cell shape change in firmly adherent monocytes and IL-2–activated lymphocytes. CX(3)CR1-transfected K562 cells, but not control K562 cells, firmly adhered to FKN-expressing ECV-304 cells (ECV-FKN) and tumor necrosis factor α–activated human umbilical vein endothelial cells. This firm adhesion was not inhibited by pertussis toxin, EDTA/EGTA, or antiintegrin antibodies, indicating that the firm adhesion was integrin independent. In summary, FKN mediated the rapid capture, integrin-independent firm adhesion, and activation of circulating leukocytes under flow. Thus, FKN and CX(3)CR1 mediate a novel pathway for leukocyte trafficking. The Rockefeller University Press 1998-10-19 /pmc/articles/PMC2213407/ /pubmed/9782118 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
Fong, Alan M.
Robinson, Lisa A.
Steeber, Douglas A.
Tedder, Thomas F.
Yoshie, Osamu
Imai, Toshio
Patel, Dhavalkumar D.
Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow
title Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow
title_full Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow
title_fullStr Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow
title_full_unstemmed Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow
title_short Fractalkine and CX(3)CR1 Mediate a Novel Mechanism of Leukocyte Capture, Firm Adhesion, and Activation under Physiologic Flow
title_sort fractalkine and cx(3)cr1 mediate a novel mechanism of leukocyte capture, firm adhesion, and activation under physiologic flow
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213407/
https://www.ncbi.nlm.nih.gov/pubmed/9782118
work_keys_str_mv AT fongalanm fractalkineandcx3cr1mediateanovelmechanismofleukocytecapturefirmadhesionandactivationunderphysiologicflow
AT robinsonlisaa fractalkineandcx3cr1mediateanovelmechanismofleukocytecapturefirmadhesionandactivationunderphysiologicflow
AT steeberdouglasa fractalkineandcx3cr1mediateanovelmechanismofleukocytecapturefirmadhesionandactivationunderphysiologicflow
AT tedderthomasf fractalkineandcx3cr1mediateanovelmechanismofleukocytecapturefirmadhesionandactivationunderphysiologicflow
AT yoshieosamu fractalkineandcx3cr1mediateanovelmechanismofleukocytecapturefirmadhesionandactivationunderphysiologicflow
AT imaitoshio fractalkineandcx3cr1mediateanovelmechanismofleukocytecapturefirmadhesionandactivationunderphysiologicflow
AT pateldhavalkumard fractalkineandcx3cr1mediateanovelmechanismofleukocytecapturefirmadhesionandactivationunderphysiologicflow