Literature DB >> 10713152

Distinct recognition of collagen subtypes by alpha(1)beta(1) and alpha(2)beta(1) integrins. Alpha(1)beta(1) mediates cell adhesion to type XIII collagen.

P Nykvist1, H Tu, J Ivaska, J Käpylä, T Pihlajaniemi, J Heino.   

Abstract

Two integrin-type collagen receptors, alpha(1)beta(1) and alpha(2)beta(1), are structurally very similar. However, cells can concomitantly express the both receptors and they might have independent functions. Here, Chinese hamster ovary (CHO) cells, which lack endogenous collagen receptors, were transfected with either alpha(1) or alpha(2) integrin cDNA. Cells were allowed to adhere to various collagen types and their integrin function was tested by observing the progression of cell spreading. The cells expressing alpha(1)beta(1) integrin could spread on collagen types I, III, IV, and V but not on type II, while alpha(2)beta(1) integrin could mediate cell spreading on collagen types I-V. Type XIII is a transmembrane collagen and its interaction with the integrins has not been previously studied. CHO-alpha1beta1 cells could spread on human recombinant type XIII collagen, unlike CHO-alpha2beta1 cells. Integrins alpha(1)beta(1) and alpha(2)beta(1) recognize collagens with the specific alphaI domains. The alpha(1)I and alpha(2)I domains were produced as recombinant proteins, labeled with europium and used in a sensitive solid-phase binding assay based on time-resolved fluorescence. alpha(1)I domain, unlike the alpha(2)I domain, could attach to type XIII collagen. The results indicate, that alpha(1)beta(1) and alpha(2)beta(1) have different ligand binding specificity. Distinct recognition of different collagen subtypes by the alphaI domains can partially explain the differences seen in cell spreading. However, despite the fact that CHO-alpha1beta1 cells could not spread on type II collagen alpha(1)I domain could bind to this collagen type. Thus, the cell spreading on collagens may also be regulated by factors other than the integrins.

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Year:  2000        PMID: 10713152     DOI: 10.1074/jbc.275.11.8255

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  45 in total

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Authors:  M A Chernousov; R C Stahl; D J Carey
Journal:  J Neurosci       Date:  2001-08-15       Impact factor: 6.167

2.  A short sequence in the N-terminal region is required for the trimerization of type XIII collagen and is conserved in other collagenous transmembrane proteins.

Authors:  A Snellman; H Tu; T Väisänen; A P Kvist; P Huhtala; T Pihlajaniemi
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3.  The shed ectodomain of type XIII collagen affects cell behaviour in a matrix-dependent manner.

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4.  Structure of collagen receptor integrin α(1)I domain carrying the activating mutation E317A.

Authors:  Matti Lahti; Eva Bligt; Henri Niskanen; Vimal Parkash; Anna-Maria Brandt; Johanna Jokinen; Pekka Patrikainen; Jarmo Käpylä; Jyrki Heino; Tiina A Salminen
Journal:  J Biol Chem       Date:  2011-10-26       Impact factor: 5.157

5.  Collagen XIII induced in vascular endothelium mediates alpha1beta1 integrin-dependent transmigration of monocytes in renal fibrosis.

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Journal:  Am J Pathol       Date:  2010-09-23       Impact factor: 4.307

6.  Revealing early steps of alpha2beta1 integrin-mediated adhesion to collagen type I by using single-cell force spectroscopy.

Authors:  Anna Taubenberger; David A Cisneros; Jens Friedrichs; Pierre-Henri Puech; Daniel J Muller; Clemens M Franz
Journal:  Mol Biol Cell       Date:  2007-02-21       Impact factor: 4.138

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Authors:  Yanni K-Y Chin; Stephen J Headey; Biswaranjan Mohanty; Rahul Patil; Paul A McEwan; James D Swarbrick; Terrence D Mulhern; Jonas Emsley; Jamie S Simpson; Martin J Scanlon
Journal:  J Biol Chem       Date:  2013-11-01       Impact factor: 5.157

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Authors:  Xiaocai Yan; Bryon D Johnson; Rimas J Orentas
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Review 9.  Role of tyrosine-sulfated proteins in retinal structure and function.

Authors:  Y Kanan; M R Al-Ubaidi
Journal:  Exp Eye Res       Date:  2015-04       Impact factor: 3.467

10.  A mutant collagen XIII alters intestinal expression of immune response genes and predisposes transgenic mice to develop B-cell lymphomas.

Authors:  Anne Tuomisto; Malin Sund; Jenni Tahkola; Anne Latvanlehto; Eeva-Riitta Savolainen; Helena Autio-Harmainen; Annikki Liakka; Raija Sormunen; Jussi Vuoristo; Anne West; Riitta Lahesmaa; Herbert C Morse; Taina Pihlajaniemi
Journal:  Cancer Res       Date:  2008-12-15       Impact factor: 12.701

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