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Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation

In the vasculature, NADPH oxidase is the main contributor of reactive oxygen species (ROS) which play a key role in endothelial signalling and functions. We demonstrate that ECV304 cells express p47(phox), p67(phox), and p22(phox) subunits of NADPH oxidase, as well as formyl peptide receptors 1 and...

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Autores principales: Cattaneo, Fabio, Castaldo, Martina, Parisi, Melania, Faraonio, Raffaella, Esposito, Gabriella, Ammendola, Rosario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5884202/
https://www.ncbi.nlm.nih.gov/pubmed/29743977
http://dx.doi.org/10.1155/2018/2609847
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author Cattaneo, Fabio
Castaldo, Martina
Parisi, Melania
Faraonio, Raffaella
Esposito, Gabriella
Ammendola, Rosario
author_facet Cattaneo, Fabio
Castaldo, Martina
Parisi, Melania
Faraonio, Raffaella
Esposito, Gabriella
Ammendola, Rosario
author_sort Cattaneo, Fabio
collection PubMed
description In the vasculature, NADPH oxidase is the main contributor of reactive oxygen species (ROS) which play a key role in endothelial signalling and functions. We demonstrate that ECV304 cells express p47(phox), p67(phox), and p22(phox) subunits of NADPH oxidase, as well as formyl peptide receptors 1 and 3 (FPR1/3), which are members of the GPCR family. By RT-PCR, we also detected Flt-1 and Flk-1/KDR in these cells. Stimulation of FPR1 by N-fMLP induces p47(phox) phosphorylation, which is the crucial event for NADPH oxidase-dependent superoxide production. Transphosphorylation of RTKs by GPCRs is a biological mechanism through which the information exchange is amplified throughout the cell. ROS act as signalling intermediates in the transactivation mechanism. We show that N-fMLP stimulation induces the phosphorylation of cytosolic Y951, Y996, and Y1175 residues of VEGFR2, which constitute the anchoring sites for signalling molecules. These, in turn, activate PI3K/Akt and PLC-γ1/PKC intracellular pathways. FPR1-induced ROS production plays a critical role in this cross-talk mechanism. In fact, inhibition of FPR1 and/or NADPH oxidase functions prevents VEGFR2 transactivation and the triggering of the downstream signalling cascades. N-fMLP stimulation also ameliorates cellular migration and capillary-like network formation ability of ECV304 cells.
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spelling pubmed-58842022018-05-09 Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation Cattaneo, Fabio Castaldo, Martina Parisi, Melania Faraonio, Raffaella Esposito, Gabriella Ammendola, Rosario Oxid Med Cell Longev Research Article In the vasculature, NADPH oxidase is the main contributor of reactive oxygen species (ROS) which play a key role in endothelial signalling and functions. We demonstrate that ECV304 cells express p47(phox), p67(phox), and p22(phox) subunits of NADPH oxidase, as well as formyl peptide receptors 1 and 3 (FPR1/3), which are members of the GPCR family. By RT-PCR, we also detected Flt-1 and Flk-1/KDR in these cells. Stimulation of FPR1 by N-fMLP induces p47(phox) phosphorylation, which is the crucial event for NADPH oxidase-dependent superoxide production. Transphosphorylation of RTKs by GPCRs is a biological mechanism through which the information exchange is amplified throughout the cell. ROS act as signalling intermediates in the transactivation mechanism. We show that N-fMLP stimulation induces the phosphorylation of cytosolic Y951, Y996, and Y1175 residues of VEGFR2, which constitute the anchoring sites for signalling molecules. These, in turn, activate PI3K/Akt and PLC-γ1/PKC intracellular pathways. FPR1-induced ROS production plays a critical role in this cross-talk mechanism. In fact, inhibition of FPR1 and/or NADPH oxidase functions prevents VEGFR2 transactivation and the triggering of the downstream signalling cascades. N-fMLP stimulation also ameliorates cellular migration and capillary-like network formation ability of ECV304 cells. Hindawi 2018-03-18 /pmc/articles/PMC5884202/ /pubmed/29743977 http://dx.doi.org/10.1155/2018/2609847 Text en Copyright © 2018 Fabio Cattaneo et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Cattaneo, Fabio
Castaldo, Martina
Parisi, Melania
Faraonio, Raffaella
Esposito, Gabriella
Ammendola, Rosario
Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation
title Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation
title_full Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation
title_fullStr Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation
title_full_unstemmed Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation
title_short Formyl Peptide Receptor 1 Modulates Endothelial Cell Functions by NADPH Oxidase-Dependent VEGFR2 Transactivation
title_sort formyl peptide receptor 1 modulates endothelial cell functions by nadph oxidase-dependent vegfr2 transactivation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5884202/
https://www.ncbi.nlm.nih.gov/pubmed/29743977
http://dx.doi.org/10.1155/2018/2609847
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