30
Views
6
CrossRef citations to date
0
Altmetric
Original Article

Vascular Cell Adhesion Molecule (VCAM)-Ig Fusion Protein Defines Distinct Affinity States of the Very Late Antigen-4 (VLA-4) Receptor

, , , &
Pages 131-142 | Received 23 Dec 1994, Published online: 11 Jul 2009

References

  • Anwar A. R. F., Moqbel R., Walsh G. M., Kay A. B., Ward-Law A. J. Adhesion to Fibronectin Prolongs Eosinophil Survival. The Journal of Experimental Medicine 1993; 177: 839–843
  • Arroyo A. G., Garcia-Pardo A., Sanchez-Madrid F. A High Affinity Conformational State on VLA-4 Integrin Heterodimers Induced by an Anti-β1 Chain Monoclonal Antibody. J. Biol. Chem. 1993; 268: 9863–9868
  • Arroyo A. G., Sanchez-Mateos P., Campanero M. R., Martin-Padura I., Dejana E., Sanchez-Madrid F. Regulation of the VLA Integrin-Ligand Interactions through the β1 Subunit. J. Cell Bio. 1992; 117: 659–670
  • Burkly L. C., Jakubowski A., Newman B. M., Rosa M. D., Chi-Rosso G., Lobb R. R. Signaling by vascular cell adhesion molecule-1 (VCAM-1) through VLA4 promotes CD3-dependent T cell proliferation. Eur. J. Immunol. 1991; 21: 2871–2875
  • Chan B. M. C., Wong J. G. P., Rao A., Hemler M. E. T cell receptor-dependent, antigen-specific stimulation of a murine T cell clone induced a transient, VLA-4 protein-mediated binding to extracellular matrix. J. Immunol. 1991; 147: 398–404
  • Crowe D. T., Chiu H., Fong S., Weissman I. L. Regulation of the Avidity of Integrin a4b1 by the b7 Cytoplasmic Domain. J. Biol. Chem. 1994; 269: 14411–14418
  • Damle N. K., Klussman K., Leytze G., Aruffo A., Linsley P. S., Ledbetter J. A. Costimulation with Integrin Ligands Intercellular Adhesion Molecule-1 or Vascular Cell Adhesion Molecule-1 Augments Activation-Induced Death of Antigen-Specific CD4+ T Lymphocytes. J. Immunol. 1993; 151: 2368–2379
  • Faull R. J., Kovach N. L., Harlan J. M., Ginsberg M. H. Affinity Modulation of Integrin α6β1: Regulation of the Functional Response by Soluble Fibronectin. J. Cell Biol. 1993; 121: 155–162
  • Faull R. J., Jovach N. L., Harlan J. M., Ginsberg M. H. Stimulation of Integrin-mediated Adhesion of T Lymphocytes and Monocytes: Two Mechanisms with Divergent Biological Consequences. J. Exp. Med. 1994; 179: 1307–1316
  • Freedman A. S., Munro J. M., Rice G. E., Bevilaqua M. P., Morimoto C., McIntyre B. W., Rhynhart K., Pober J. S., Nadler L. M. Adhesion of Human B Cells to Germinal Centers in Vitro Involves VLA-4 and INCAM-110. Science 1990; 249: 1030–1033
  • Gearing A. J. H., Newman W. Circulating Adhesion Molecules in Disease. Immunology Today 1993; 14: 506–512
  • Hines K. L., Kulkarni A. B., McCarthy J. B., Tian H., Ward J. M., Christ M., NcCarthney-Francis N. L., Furcht L. T., Karls-Son S., Wahl S. M. Synthetic fibronectin peptides interrupt inflammatory cell infiltration in transforming growth factor β1 knockout mice. Proc. Natl. Acad. Sci. 1994; 91: 5187–5191
  • Hynes R. O. Integrins: Versatility, Modulation, and Signaling in Cell Adhesion. Cell 1992; 69: 11–25
  • Koopman G., Keehnen R. M. J., Lindhout E., Newman W., Shimizu Y., van Seventer G. A., de Groot C., Pals S. T. Adhesion Through the LFA-1 (CD11a/CD18)-ICAM-1 (CD54) and the VLA-4 (CD49d)-VCAM-1 (CD106) Pathway Prevents Apoptosis of Germinal Center B Cells. J. Immunol. 1994; 152: 3760–3767
  • Lobb R. R., Hemler M. E. The Pathophysiologic Role of α4 Integrins in Vivo. J. Clin. Invest. 1994; 94: 1722–1728
  • Masumoto A., Hemler M. E. Multiple Activation States of VLA-4. Mechanistic Differences Between Adhesion to CS1/Fibronectin and to Vascular Cell Adhesion Molecule-1. J. Biol. Chem. 1993; 268: 228–234
  • Miller G. T., Hochman P. S., Meier W., Tizard R., Bixler S., Rosa M. D., Wallner B. P. Specific Interaction of Lymphocyte Function-associated Antigen with CD2 Can Inhibit T Cell Responses. J. Exp. Med. 1993; 178: 211–222
  • Miyake K., Weissman I. L., Greenberger J. S., Kincade P. W. Evidence for a Role of the Integrin VLA-4 in Lympho-hemopoiesis. J. Exp. Med. 1991; 173: 599–607
  • Muller W. A., Ratti C. M., McDonnell S. L., Cohn Z. A. A Human Endothelial Cell-Restricted Externally Disposed Plasmalemmal Protein Enriched In Intracellular Junctions. J. Exp. Med. 1989; 170: 399–414
  • Osborn L. Leukocyte Adhesion to Endothelium in Inflammation. Cell 1990; 62: 3–6
  • Perelson A. S., DeLisi C. Receptor Clustering on a Cell Surface. I. Theory of Receptor Crosslinking by Ligands Bearing Two Chemically Identical Functional Groups. Mathematical Biosciences 1980; 48: 71–110
  • Rice G. E., Munro J. M., Corless C., Bevilaqua M. P. Vascular and Nonvascular Expression of INCAM-110. Am. J. Path. 1991; 138: 385–393
  • Rosen G. D., Sanes J. R., LaChance R., Cunningham J. M., Roman J., Dean D. C. Cell 1992; 69: 1107–1119
  • Salomon D. R., Mojcik C. F., Chang A. C., Wadsworth S., Adams D. H., Coligan J. E., Shevach E. M. Constitutive Activation of Integrin α4β1 Defines a Unique Stage of Human Thymocyte Development. J. Exp. Med. 1994; 179: 1573–1584
  • Sanchez-Madrid F., DeLandazuri M. O., Morago G., Cebrian M., Acevedo A., Bernabeu C. VLA-3: A novel polypeptide association within the VLA molecular complex: cell distribution and biochemical characterization. Eur. J. Immunol. 1986; 16: 1343–1349
  • Shimizu Y., vanSeventer G. A., Horgan K. J., Shaw S. Regulated expression and binding of three VLA (β1) integrin receptors on T cells. Nature 1990; 345: 250–253
  • Springer T. A. Traffic Signals for Lymphocyte Recirculation and Leukocyte Emigration: The Multistep Paradigm. Cell 1994; 76: 301–314
  • Stockinger H., Gadd S. J., Eher R., Majdic O., Schreiber W., Kasinrerk W., Strass B., Schnabl E., Knapp W. Molecular Characterization and Functional Analysis of Leukocyte Surface Protein CD31. J. Immunol. 1990; 145: 3889–3897
  • Tanaka Y., Adams D. H., Hubscher S., Hirano H., Siebenlist U., Shaw S. T-cell adhesion induced by proteogly-can-immobilized cytokine MIP-1β. Nature 1993; 361: 79–82
  • Tanaka Y., Albelda S. M., Horgan K. J., vanSeventer G. A., Shimizu Y., Newman W., Hallam J., Newman P. J., Buck C. A., Shaw S. CD31 expressed on distinctive T cell subsets is a preferential amplifier of β1 integrin-mediated adhesion. J. Exp. Med. 1992; 176: 245–253
  • Teixido J., Hemler M. E., Greenberger J. S., Anklesaria P. Role of β1 and β2 integrins in the adhesion of human CD34hi stem cells to bone marrow stroma. J. Clin. Invest. 1992; 90: 358–367
  • Utsumi K., Sawada M., Narumiya S., Nagamine J., Sakata T., Iwagami S., Kita Y., Teraoka H., Hirano H., Ogata M., Hamaoka T., Fiijiwara H. Proc. Natl. Acad. Sci. U.S.A. 1991; 88: 5685–5689
  • Wayner E. A., Garcia-Pardo A., Humphries M. J., McDonald J. A., Carter W. G. Identification and Characterization of the T Lymphocyte Adhesion Receptor for an Alternative Cell Attachment Domain (CS-1) in Plasma Fibronectin. J. Cell. Biol. 1989; 109: 1321–1330
  • Yurochko A. D., Liu D. Y., Eierman D., Haskill S. Integrins as a primary signal transduction molecule regulating monocyte immediate-early gene induction. Proc. Natl. Acad. Sci. USA 1992; 89: 9034–9038

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.