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Expression and function of αβ1 integrins in pancretic beta (INS-1) cells

Integrin-extracellular matrix interactions are important determinants of beta cell behaviours. The β1 integrin is a well-known regulator of beta cell activities; however, little is known of its associated α subunits. In the present study, αβ1 integrin expression was examined in the rat insulinoma ce...

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Detalles Bibliográficos
Autores principales: Krishnamurthy, Mansa, Li, Jinming, Al-Masri, Maia, Wang, Rennian
Formato: Texto
Lenguaje:English
Publicado: Springer Netherlands 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2648043/
https://www.ncbi.nlm.nih.gov/pubmed/19023675
http://dx.doi.org/10.1007/s12079-008-0030-6
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author Krishnamurthy, Mansa
Li, Jinming
Al-Masri, Maia
Wang, Rennian
author_facet Krishnamurthy, Mansa
Li, Jinming
Al-Masri, Maia
Wang, Rennian
author_sort Krishnamurthy, Mansa
collection PubMed
description Integrin-extracellular matrix interactions are important determinants of beta cell behaviours. The β1 integrin is a well-known regulator of beta cell activities; however, little is known of its associated α subunits. In the present study, αβ1 integrin expression was examined in the rat insulinoma cell line (INS-1) to identify their role in beta cell survival and function. Seven α subunits associated with β1 integrin were identified, including α1-6 and αV. Among these heterodimers, α3β1 was most highly expressed. Common ligands for the α3β1 integrin, including fibronectin, laminin, collagen I and collagen IV were tested to identify the most suitable matrix for INS-1 cell proliferation and function. Cells exposed to collagen I and IV demonstrated significant increases in adhesion, spreading, cell viability, proliferation, and FAK phosphorylation when compared to cells cultured on fibronectin, laminin and controls. Integrin-dependent attachment also had a beneficial effect on beta cell function, increasing Pdx-1 and insulin gene and protein expression on collagens I and IV, in parallel with increased basal insulin release and enhanced insulin secretion upon high glucose challenge. Furthermore, functional blockade of α3β1 integrin decreased cell adhesion, spreading and viability on both collagens and reduced Pdx-1 and insulin expression, indicating that its interactions with collagen matrices are important for beta cell survival and function. These results demonstrate that specific αβ1 integrin-ECM interactions are critical regulators of INS-1 beta cell survival and function and will be important in designing optimal conditions for cell-based therapies for diabetes treatment.
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spelling pubmed-26480432009-03-04 Expression and function of αβ1 integrins in pancretic beta (INS-1) cells Krishnamurthy, Mansa Li, Jinming Al-Masri, Maia Wang, Rennian J Cell Commun Signal Research Article Integrin-extracellular matrix interactions are important determinants of beta cell behaviours. The β1 integrin is a well-known regulator of beta cell activities; however, little is known of its associated α subunits. In the present study, αβ1 integrin expression was examined in the rat insulinoma cell line (INS-1) to identify their role in beta cell survival and function. Seven α subunits associated with β1 integrin were identified, including α1-6 and αV. Among these heterodimers, α3β1 was most highly expressed. Common ligands for the α3β1 integrin, including fibronectin, laminin, collagen I and collagen IV were tested to identify the most suitable matrix for INS-1 cell proliferation and function. Cells exposed to collagen I and IV demonstrated significant increases in adhesion, spreading, cell viability, proliferation, and FAK phosphorylation when compared to cells cultured on fibronectin, laminin and controls. Integrin-dependent attachment also had a beneficial effect on beta cell function, increasing Pdx-1 and insulin gene and protein expression on collagens I and IV, in parallel with increased basal insulin release and enhanced insulin secretion upon high glucose challenge. Furthermore, functional blockade of α3β1 integrin decreased cell adhesion, spreading and viability on both collagens and reduced Pdx-1 and insulin expression, indicating that its interactions with collagen matrices are important for beta cell survival and function. These results demonstrate that specific αβ1 integrin-ECM interactions are critical regulators of INS-1 beta cell survival and function and will be important in designing optimal conditions for cell-based therapies for diabetes treatment. Springer Netherlands 2008-11-21 2008-12 /pmc/articles/PMC2648043/ /pubmed/19023675 http://dx.doi.org/10.1007/s12079-008-0030-6 Text en © The Author(s) 2008
spellingShingle Research Article
Krishnamurthy, Mansa
Li, Jinming
Al-Masri, Maia
Wang, Rennian
Expression and function of αβ1 integrins in pancretic beta (INS-1) cells
title Expression and function of αβ1 integrins in pancretic beta (INS-1) cells
title_full Expression and function of αβ1 integrins in pancretic beta (INS-1) cells
title_fullStr Expression and function of αβ1 integrins in pancretic beta (INS-1) cells
title_full_unstemmed Expression and function of αβ1 integrins in pancretic beta (INS-1) cells
title_short Expression and function of αβ1 integrins in pancretic beta (INS-1) cells
title_sort expression and function of αβ1 integrins in pancretic beta (ins-1) cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2648043/
https://www.ncbi.nlm.nih.gov/pubmed/19023675
http://dx.doi.org/10.1007/s12079-008-0030-6
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