Cargando…

A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction

Focal adhesions (FAs) are essential structures for cell adhesion, migration, and morphogenesis. Integrin-linked kinase (ILK), which is capable of interacting with the cytoplasmic domain of β1 integrin, seems to be a key component of FAs, but its exact role in cell–substrate interaction remains to be...

Descripción completa

Detalles Bibliográficos
Autores principales: Yamaji, Satoshi, Suzuki, Atsushi, Sugiyama, Yuki, Koide, Yu-ichi, Yoshida, Michihiko, Kanamori, Heiwa, Mohri, Hiroshi, Ohno, Shigeo, Ishigatsubo, Yoshiaki
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2192033/
https://www.ncbi.nlm.nih.gov/pubmed/11402068
_version_ 1782147145006055424
author Yamaji, Satoshi
Suzuki, Atsushi
Sugiyama, Yuki
Koide, Yu-ichi
Yoshida, Michihiko
Kanamori, Heiwa
Mohri, Hiroshi
Ohno, Shigeo
Ishigatsubo, Yoshiaki
author_facet Yamaji, Satoshi
Suzuki, Atsushi
Sugiyama, Yuki
Koide, Yu-ichi
Yoshida, Michihiko
Kanamori, Heiwa
Mohri, Hiroshi
Ohno, Shigeo
Ishigatsubo, Yoshiaki
author_sort Yamaji, Satoshi
collection PubMed
description Focal adhesions (FAs) are essential structures for cell adhesion, migration, and morphogenesis. Integrin-linked kinase (ILK), which is capable of interacting with the cytoplasmic domain of β1 integrin, seems to be a key component of FAs, but its exact role in cell–substrate interaction remains to be clarified. Here, we identified a novel ILK-binding protein, affixin, that consists of two tandem calponin homology domains. In CHOcells, affixin and ILK colocalize at FAs and at the tip of the leading edge, whereas in skeletal muscle cells they colocalize at the sarcolemma where cells attach to the basal lamina, showing a striped pattern corresponding to cytoplasmic Z-band striation. When CHO cells are replated on fibronectin, affixin and ILK but not FA kinase and vinculin concentrate at the cell surface in blebs during the early stages of cell spreading, which will grow into membrane ruffles on lamellipodia. Overexpression of the COOH-terminal region of affixin, which is phosphorylated by ILK in vitro, blocks cell spreading at the initial stage, presumably by interfering with the formation of FAs and stress fibers. The coexpression of ILK enhances this effect. These results provide evidence suggesting that affixin is involved in integrin–ILK signaling required for the establishment of cell–substrate adhesion.
format Text
id pubmed-2192033
institution National Center for Biotechnology Information
language English
publishDate 2001
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-21920332008-05-01 A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction Yamaji, Satoshi Suzuki, Atsushi Sugiyama, Yuki Koide, Yu-ichi Yoshida, Michihiko Kanamori, Heiwa Mohri, Hiroshi Ohno, Shigeo Ishigatsubo, Yoshiaki J Cell Biol Original Article Focal adhesions (FAs) are essential structures for cell adhesion, migration, and morphogenesis. Integrin-linked kinase (ILK), which is capable of interacting with the cytoplasmic domain of β1 integrin, seems to be a key component of FAs, but its exact role in cell–substrate interaction remains to be clarified. Here, we identified a novel ILK-binding protein, affixin, that consists of two tandem calponin homology domains. In CHOcells, affixin and ILK colocalize at FAs and at the tip of the leading edge, whereas in skeletal muscle cells they colocalize at the sarcolemma where cells attach to the basal lamina, showing a striped pattern corresponding to cytoplasmic Z-band striation. When CHO cells are replated on fibronectin, affixin and ILK but not FA kinase and vinculin concentrate at the cell surface in blebs during the early stages of cell spreading, which will grow into membrane ruffles on lamellipodia. Overexpression of the COOH-terminal region of affixin, which is phosphorylated by ILK in vitro, blocks cell spreading at the initial stage, presumably by interfering with the formation of FAs and stress fibers. The coexpression of ILK enhances this effect. These results provide evidence suggesting that affixin is involved in integrin–ILK signaling required for the establishment of cell–substrate adhesion. The Rockefeller University Press 2001-06-11 /pmc/articles/PMC2192033/ /pubmed/11402068 Text en © 2001 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
Yamaji, Satoshi
Suzuki, Atsushi
Sugiyama, Yuki
Koide, Yu-ichi
Yoshida, Michihiko
Kanamori, Heiwa
Mohri, Hiroshi
Ohno, Shigeo
Ishigatsubo, Yoshiaki
A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction
title A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction
title_full A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction
title_fullStr A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction
title_full_unstemmed A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction
title_short A Novel Integrin-Linked Kinase–Binding Protein, Affixin, Is Involved in the Early Stage of Cell–Substrate Interaction
title_sort novel integrin-linked kinase–binding protein, affixin, is involved in the early stage of cell–substrate interaction
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2192033/
https://www.ncbi.nlm.nih.gov/pubmed/11402068
work_keys_str_mv AT yamajisatoshi anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT suzukiatsushi anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT sugiyamayuki anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT koideyuichi anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT yoshidamichihiko anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT kanamoriheiwa anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT mohrihiroshi anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT ohnoshigeo anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT ishigatsuboyoshiaki anovelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT yamajisatoshi novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT suzukiatsushi novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT sugiyamayuki novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT koideyuichi novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT yoshidamichihiko novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT kanamoriheiwa novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT mohrihiroshi novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT ohnoshigeo novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction
AT ishigatsuboyoshiaki novelintegrinlinkedkinasebindingproteinaffixinisinvolvedintheearlystageofcellsubstrateinteraction