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Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin

Cadherins are expressed in tissue-restricted patterns and typically mediate homophilic adhesion. Cadherins also mediate lymphocyte adhesion, providing the opportunity for lymphocyte attachment to parenchymal cells. The best characterized example of lymphocyte adhesion to a tissue-specific cell adhes...

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Autores principales: Taraszka, Karen S., Higgins, Jonathan M.G., Tan, Kemin, Mandelbrot, Didier A., Wang, Jia-huai, Brenner, Michael B.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2000
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213439/
https://www.ncbi.nlm.nih.gov/pubmed/10790430
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author Taraszka, Karen S.
Higgins, Jonathan M.G.
Tan, Kemin
Mandelbrot, Didier A.
Wang, Jia-huai
Brenner, Michael B.
author_facet Taraszka, Karen S.
Higgins, Jonathan M.G.
Tan, Kemin
Mandelbrot, Didier A.
Wang, Jia-huai
Brenner, Michael B.
author_sort Taraszka, Karen S.
collection PubMed
description Cadherins are expressed in tissue-restricted patterns and typically mediate homophilic adhesion. Cadherins also mediate lymphocyte adhesion, providing the opportunity for lymphocyte attachment to parenchymal cells. The best characterized example of lymphocyte adhesion to a tissue-specific cell adhesion molecule, as opposed to a vascular endothelial adhesion molecule, is the interaction between integrin α(E)β(7) on intraepithelial lymphocytes and E-cadherin on epithelial cells. However, the molecular basis for an integrin–cadherin interaction is not well defined. Realization that the cadherin domain adopts a topology similar to the immunoglobulin (Ig) fold suggested that integrin recognition of E-cadherin might be similar to recognition of Ig superfamily ligands. Thus, we modeled domain 1 of human E-cadherin and studied the role of solvent-exposed loops that connect Ig-like core-forming β strands. Mutational analyses localized the integrin α(E)β(7) recognition site to the top of domain 1 at the face formed by the BC and FG loops, a site distinct from the region recognized in intercellular adhesion molecule (ICAM)-1, -2, and -3, mucosal addressin cell adhesion molecule 1 (MAdCAM-1), vascular cell adhesion molecule 1 (VCAM-1), and fibronectin by their integrin ligands. Moreover, the integrin α(E)β(7) binding site is distinct from the homophilic binding site on E-cadherin. These studies provide a conceptual basis for integrin–cadherin binding and extend the model that an Ig-like fold can serve as a scaffold for recognition.
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spelling pubmed-22134392008-04-16 Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin Taraszka, Karen S. Higgins, Jonathan M.G. Tan, Kemin Mandelbrot, Didier A. Wang, Jia-huai Brenner, Michael B. J Exp Med Original Article Cadherins are expressed in tissue-restricted patterns and typically mediate homophilic adhesion. Cadherins also mediate lymphocyte adhesion, providing the opportunity for lymphocyte attachment to parenchymal cells. The best characterized example of lymphocyte adhesion to a tissue-specific cell adhesion molecule, as opposed to a vascular endothelial adhesion molecule, is the interaction between integrin α(E)β(7) on intraepithelial lymphocytes and E-cadherin on epithelial cells. However, the molecular basis for an integrin–cadherin interaction is not well defined. Realization that the cadherin domain adopts a topology similar to the immunoglobulin (Ig) fold suggested that integrin recognition of E-cadherin might be similar to recognition of Ig superfamily ligands. Thus, we modeled domain 1 of human E-cadherin and studied the role of solvent-exposed loops that connect Ig-like core-forming β strands. Mutational analyses localized the integrin α(E)β(7) recognition site to the top of domain 1 at the face formed by the BC and FG loops, a site distinct from the region recognized in intercellular adhesion molecule (ICAM)-1, -2, and -3, mucosal addressin cell adhesion molecule 1 (MAdCAM-1), vascular cell adhesion molecule 1 (VCAM-1), and fibronectin by their integrin ligands. Moreover, the integrin α(E)β(7) binding site is distinct from the homophilic binding site on E-cadherin. These studies provide a conceptual basis for integrin–cadherin binding and extend the model that an Ig-like fold can serve as a scaffold for recognition. The Rockefeller University Press 2000-05-01 /pmc/articles/PMC2213439/ /pubmed/10790430 Text en © 2000 The Rockefeller University Press 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 Original Article
Taraszka, Karen S.
Higgins, Jonathan M.G.
Tan, Kemin
Mandelbrot, Didier A.
Wang, Jia-huai
Brenner, Michael B.
Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin
title Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin
title_full Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin
title_fullStr Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin
title_full_unstemmed Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin
title_short Molecular Basis for Leukocyte Integrin α(E)β(7) Adhesion to Epithelial (E)-Cadherin
title_sort molecular basis for leukocyte integrin α(e)β(7) adhesion to epithelial (e)-cadherin
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213439/
https://www.ncbi.nlm.nih.gov/pubmed/10790430
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