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Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch

Integrins mediate cell adhesion, migration, and survival by connecting intracellular machinery with the surrounding extracellular matrix. Previous studies demonstrated the importance of the interaction between β(3) integrin and VEGF type 2 receptor (VEGFR2) in VEGF-induced angiogenesis. Here we pres...

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Autores principales: West, Xiaoxia Z., Meller, Nahum, Malinin, Nikolay L., Deshmukh, Lalit, Meller, Julia, Mahabeleshwar, Ganapati H., Weber, Malory E., Kerr, Bethany A., Vinogradova, Olga, Byzova, Tatiana V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3281915/
https://www.ncbi.nlm.nih.gov/pubmed/22363548
http://dx.doi.org/10.1371/journal.pone.0031071
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author West, Xiaoxia Z.
Meller, Nahum
Malinin, Nikolay L.
Deshmukh, Lalit
Meller, Julia
Mahabeleshwar, Ganapati H.
Weber, Malory E.
Kerr, Bethany A.
Vinogradova, Olga
Byzova, Tatiana V.
author_facet West, Xiaoxia Z.
Meller, Nahum
Malinin, Nikolay L.
Deshmukh, Lalit
Meller, Julia
Mahabeleshwar, Ganapati H.
Weber, Malory E.
Kerr, Bethany A.
Vinogradova, Olga
Byzova, Tatiana V.
author_sort West, Xiaoxia Z.
collection PubMed
description Integrins mediate cell adhesion, migration, and survival by connecting intracellular machinery with the surrounding extracellular matrix. Previous studies demonstrated the importance of the interaction between β(3) integrin and VEGF type 2 receptor (VEGFR2) in VEGF-induced angiogenesis. Here we present in vitro evidence of the direct association between the cytoplasmic tails (CTs) of β(3) and VEGFR2. Specifically, the membrane-proximal motif around (801)YLSI in VEGFR2 mediates its binding to non-phosphorylated β(3)CT, accommodating an α-helical turn in integrin bound conformation. We also show that Y(747) phosphorylation of β(3) enhances the above interaction. To demonstrate the importance of β(3) phosphorylation in endothelial cell functions, we synthesized β(3)CT-mimicking Y(747) phosphorylated and unphosphorylated membrane permeable peptides. We show that a peptide containing phospho-Y(747) but not F(747) significantly inhibits VEGF-induced signaling and angiogenesis. Moreover, phospho-Y(747) peptide exhibits inhibitory effect only in WT but not in β(3) integrin knock-out or β(3) integrin knock-in cells expressing β(3) with two tyrosines substituted for phenylalanines, demonstrating its specificity. Importantly, these peptides have no effect on fibroblast growth factor receptor signaling. Collectively these data provide novel mechanistic insights into phosphorylation dependent cross-talk between integrin and VEGFR2.
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spelling pubmed-32819152012-02-23 Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch West, Xiaoxia Z. Meller, Nahum Malinin, Nikolay L. Deshmukh, Lalit Meller, Julia Mahabeleshwar, Ganapati H. Weber, Malory E. Kerr, Bethany A. Vinogradova, Olga Byzova, Tatiana V. PLoS One Research Article Integrins mediate cell adhesion, migration, and survival by connecting intracellular machinery with the surrounding extracellular matrix. Previous studies demonstrated the importance of the interaction between β(3) integrin and VEGF type 2 receptor (VEGFR2) in VEGF-induced angiogenesis. Here we present in vitro evidence of the direct association between the cytoplasmic tails (CTs) of β(3) and VEGFR2. Specifically, the membrane-proximal motif around (801)YLSI in VEGFR2 mediates its binding to non-phosphorylated β(3)CT, accommodating an α-helical turn in integrin bound conformation. We also show that Y(747) phosphorylation of β(3) enhances the above interaction. To demonstrate the importance of β(3) phosphorylation in endothelial cell functions, we synthesized β(3)CT-mimicking Y(747) phosphorylated and unphosphorylated membrane permeable peptides. We show that a peptide containing phospho-Y(747) but not F(747) significantly inhibits VEGF-induced signaling and angiogenesis. Moreover, phospho-Y(747) peptide exhibits inhibitory effect only in WT but not in β(3) integrin knock-out or β(3) integrin knock-in cells expressing β(3) with two tyrosines substituted for phenylalanines, demonstrating its specificity. Importantly, these peptides have no effect on fibroblast growth factor receptor signaling. Collectively these data provide novel mechanistic insights into phosphorylation dependent cross-talk between integrin and VEGFR2. Public Library of Science 2012-02-17 /pmc/articles/PMC3281915/ /pubmed/22363548 http://dx.doi.org/10.1371/journal.pone.0031071 Text en West et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
West, Xiaoxia Z.
Meller, Nahum
Malinin, Nikolay L.
Deshmukh, Lalit
Meller, Julia
Mahabeleshwar, Ganapati H.
Weber, Malory E.
Kerr, Bethany A.
Vinogradova, Olga
Byzova, Tatiana V.
Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch
title Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch
title_full Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch
title_fullStr Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch
title_full_unstemmed Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch
title_short Integrin β(3) Crosstalk with VEGFR Accommodating Tyrosine Phosphorylation as a Regulatory Switch
title_sort integrin β(3) crosstalk with vegfr accommodating tyrosine phosphorylation as a regulatory switch
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3281915/
https://www.ncbi.nlm.nih.gov/pubmed/22363548
http://dx.doi.org/10.1371/journal.pone.0031071
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