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Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin

In epithelial cells, α-, β-, and γ-catenin are involved in linking the peripheral microfilament belt to the transmembrane protein E-cadherin. α-Catenin exhibits sequence homologies over three regions to vinculin, another adherens junction protein. While vinculin is found in cell–matrix and cell–cell...

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Autores principales: Weiss, Elisabeth E., Kroemker, Martina, Rüdiger, Angelika-H., Jockusch, Brigitte M., Rüdiger, Manfred
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1998
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2132754/
https://www.ncbi.nlm.nih.gov/pubmed/9566974
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author Weiss, Elisabeth E.
Kroemker, Martina
Rüdiger, Angelika-H.
Jockusch, Brigitte M.
Rüdiger, Manfred
author_facet Weiss, Elisabeth E.
Kroemker, Martina
Rüdiger, Angelika-H.
Jockusch, Brigitte M.
Rüdiger, Manfred
author_sort Weiss, Elisabeth E.
collection PubMed
description In epithelial cells, α-, β-, and γ-catenin are involved in linking the peripheral microfilament belt to the transmembrane protein E-cadherin. α-Catenin exhibits sequence homologies over three regions to vinculin, another adherens junction protein. While vinculin is found in cell–matrix and cell–cell contacts, α-catenin is restricted to the latter. To elucidate, whether vinculin is part of the cell–cell junctional complex, we investigated complex formation and intracellular targeting of vinculin and α-catenin. We show that α-catenin colocalizes at cell–cell contacts with endogenous vinculin and also with the transfected vinculin head domain forming immunoprecipitable complexes. In vitro, the vinculin NH(2)-terminal head binds to α-catenin, as seen by immunoprecipitation, dot overlay, cosedimentation, and surface plasmon resonance measurements. The K (d) of the complex was determined to 2–4 × 10(−7) M. As seen by overlays and affinity mass spectrometry, the COOH-terminal region of α-catenin is involved in this interaction. Complex formation of vinculin and α-catenin was challenged in transfected cells. In PtK(2) cells, intact α-catenin and α-catenin1-670, harboring the β-catenin– binding site, were directed to cell–cell contacts. In contrast, α-catenin697–906 fragments were recruited to cell–cell contacts, focal adhesions, and stress fibers. Our results imply that in vivo α-catenin, like vinculin, is tightly regulated in its ligand binding activity.
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spelling pubmed-21327542008-05-01 Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin Weiss, Elisabeth E. Kroemker, Martina Rüdiger, Angelika-H. Jockusch, Brigitte M. Rüdiger, Manfred J Cell Biol Articles In epithelial cells, α-, β-, and γ-catenin are involved in linking the peripheral microfilament belt to the transmembrane protein E-cadherin. α-Catenin exhibits sequence homologies over three regions to vinculin, another adherens junction protein. While vinculin is found in cell–matrix and cell–cell contacts, α-catenin is restricted to the latter. To elucidate, whether vinculin is part of the cell–cell junctional complex, we investigated complex formation and intracellular targeting of vinculin and α-catenin. We show that α-catenin colocalizes at cell–cell contacts with endogenous vinculin and also with the transfected vinculin head domain forming immunoprecipitable complexes. In vitro, the vinculin NH(2)-terminal head binds to α-catenin, as seen by immunoprecipitation, dot overlay, cosedimentation, and surface plasmon resonance measurements. The K (d) of the complex was determined to 2–4 × 10(−7) M. As seen by overlays and affinity mass spectrometry, the COOH-terminal region of α-catenin is involved in this interaction. Complex formation of vinculin and α-catenin was challenged in transfected cells. In PtK(2) cells, intact α-catenin and α-catenin1-670, harboring the β-catenin– binding site, were directed to cell–cell contacts. In contrast, α-catenin697–906 fragments were recruited to cell–cell contacts, focal adhesions, and stress fibers. Our results imply that in vivo α-catenin, like vinculin, is tightly regulated in its ligand binding activity. The Rockefeller University Press 1998-05-04 /pmc/articles/PMC2132754/ /pubmed/9566974 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
Weiss, Elisabeth E.
Kroemker, Martina
Rüdiger, Angelika-H.
Jockusch, Brigitte M.
Rüdiger, Manfred
Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin
title Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin
title_full Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin
title_fullStr Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin
title_full_unstemmed Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin
title_short Vinculin Is Part of the Cadherin–Catenin Junctional Complex: Complex Formation between α-Catenin and Vinculin
title_sort vinculin is part of the cadherin–catenin junctional complex: complex formation between α-catenin and vinculin
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2132754/
https://www.ncbi.nlm.nih.gov/pubmed/9566974
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