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Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells

Endothelial dysfunction is a hallmark of inflammation and is mediated by inflammatory factors that signal through G protein–coupled receptors including protease-activated receptor-1 (PAR1). PAR1, a receptor for thrombin, signals via the small GTPase RhoA and myosin light chain intermediates to facil...

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Autores principales: Molinar-Inglis, Olivia, Wozniak, Jacob M., Grimsey, Neil J., Orduña-Castillo, Lennis B., Cheng, Norton, Lin, Ying, Gonzalez Ramirez, Monica L., Birch, Cierra A., Lapek, John D., Gonzalez, David J., Trejo, JoAnn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8987612/
https://www.ncbi.nlm.nih.gov/pubmed/35257745
http://dx.doi.org/10.1016/j.jbc.2022.101801
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author Molinar-Inglis, Olivia
Wozniak, Jacob M.
Grimsey, Neil J.
Orduña-Castillo, Lennis B.
Cheng, Norton
Lin, Ying
Gonzalez Ramirez, Monica L.
Birch, Cierra A.
Lapek, John D.
Gonzalez, David J.
Trejo, JoAnn
author_facet Molinar-Inglis, Olivia
Wozniak, Jacob M.
Grimsey, Neil J.
Orduña-Castillo, Lennis B.
Cheng, Norton
Lin, Ying
Gonzalez Ramirez, Monica L.
Birch, Cierra A.
Lapek, John D.
Gonzalez, David J.
Trejo, JoAnn
author_sort Molinar-Inglis, Olivia
collection PubMed
description Endothelial dysfunction is a hallmark of inflammation and is mediated by inflammatory factors that signal through G protein–coupled receptors including protease-activated receptor-1 (PAR1). PAR1, a receptor for thrombin, signals via the small GTPase RhoA and myosin light chain intermediates to facilitate endothelial barrier permeability. PAR1 also induces endothelial barrier disruption through a p38 mitogen-activated protein kinase–dependent pathway, which does not integrate into the RhoA/MLC pathway; however, the PAR1-p38 signaling pathways that promote endothelial dysfunction remain poorly defined. To identify effectors of this pathway, we performed a global phosphoproteome analysis of thrombin signaling regulated by p38 in human cultured endothelial cells using multiplexed quantitative mass spectrometry. We identified 5491 unique phosphopeptides and 2317 phosphoproteins, four distinct dynamic phosphoproteome profiles of thrombin-p38 signaling, and an enrichment of biological functions associated with endothelial dysfunction, including modulators of endothelial barrier disruption and a subset of kinases predicted to regulate p38-dependent thrombin signaling. Using available antibodies to detect identified phosphosites of key p38-regulated proteins, we discovered that inhibition of p38 activity and siRNA-targeted depletion of the p38α isoform increased basal phosphorylation of extracellular signal–regulated protein kinase 1/2, resulting in amplified thrombin-stimulated extracellular signal–regulated protein kinase 1/2 phosphorylation that was dependent on PAR1. We also discovered a role for p38 in the phosphorylation of α-catenin, a component of adherens junctions, suggesting that this phosphorylation may function as an important regulatory process. Taken together, these studies define a rich array of thrombin- and p38-regulated candidate proteins that may serve important roles in endothelial dysfunction.
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spelling pubmed-89876122022-04-11 Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells Molinar-Inglis, Olivia Wozniak, Jacob M. Grimsey, Neil J. Orduña-Castillo, Lennis B. Cheng, Norton Lin, Ying Gonzalez Ramirez, Monica L. Birch, Cierra A. Lapek, John D. Gonzalez, David J. Trejo, JoAnn J Biol Chem Research Article Endothelial dysfunction is a hallmark of inflammation and is mediated by inflammatory factors that signal through G protein–coupled receptors including protease-activated receptor-1 (PAR1). PAR1, a receptor for thrombin, signals via the small GTPase RhoA and myosin light chain intermediates to facilitate endothelial barrier permeability. PAR1 also induces endothelial barrier disruption through a p38 mitogen-activated protein kinase–dependent pathway, which does not integrate into the RhoA/MLC pathway; however, the PAR1-p38 signaling pathways that promote endothelial dysfunction remain poorly defined. To identify effectors of this pathway, we performed a global phosphoproteome analysis of thrombin signaling regulated by p38 in human cultured endothelial cells using multiplexed quantitative mass spectrometry. We identified 5491 unique phosphopeptides and 2317 phosphoproteins, four distinct dynamic phosphoproteome profiles of thrombin-p38 signaling, and an enrichment of biological functions associated with endothelial dysfunction, including modulators of endothelial barrier disruption and a subset of kinases predicted to regulate p38-dependent thrombin signaling. Using available antibodies to detect identified phosphosites of key p38-regulated proteins, we discovered that inhibition of p38 activity and siRNA-targeted depletion of the p38α isoform increased basal phosphorylation of extracellular signal–regulated protein kinase 1/2, resulting in amplified thrombin-stimulated extracellular signal–regulated protein kinase 1/2 phosphorylation that was dependent on PAR1. We also discovered a role for p38 in the phosphorylation of α-catenin, a component of adherens junctions, suggesting that this phosphorylation may function as an important regulatory process. Taken together, these studies define a rich array of thrombin- and p38-regulated candidate proteins that may serve important roles in endothelial dysfunction. American Society for Biochemistry and Molecular Biology 2022-03-04 /pmc/articles/PMC8987612/ /pubmed/35257745 http://dx.doi.org/10.1016/j.jbc.2022.101801 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Molinar-Inglis, Olivia
Wozniak, Jacob M.
Grimsey, Neil J.
Orduña-Castillo, Lennis B.
Cheng, Norton
Lin, Ying
Gonzalez Ramirez, Monica L.
Birch, Cierra A.
Lapek, John D.
Gonzalez, David J.
Trejo, JoAnn
Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells
title Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells
title_full Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells
title_fullStr Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells
title_full_unstemmed Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells
title_short Phosphoproteomic analysis of thrombin- and p38 MAPK-regulated signaling networks in endothelial cells
title_sort phosphoproteomic analysis of thrombin- and p38 mapk-regulated signaling networks in endothelial cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8987612/
https://www.ncbi.nlm.nih.gov/pubmed/35257745
http://dx.doi.org/10.1016/j.jbc.2022.101801
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