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Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand

Platelet-neutrophil interactions regulate ischemic vascular injury. Platelets are activated by serine proteases that cleave protease-activated receptor (PAR) amino termini, resulting in an activating tethered ligand. Neutrophils release cathepsin G (CatG) at sites of injury and inflammation, which a...

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Autores principales: Stoller, Michelle L., Basak, Indranil, Denorme, Frederik, Rowley, Jesse W., Alsobrooks, James, Parsawar, Krishna, Nieman, Marvin T., Yost, Christian Con, Hamilton, Justin R., Bray, Paul F., Campbell, Robert A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Hematology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9006282/
https://www.ncbi.nlm.nih.gov/pubmed/34883511
http://dx.doi.org/10.1182/bloodadvances.2021006133
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author Stoller, Michelle L.
Basak, Indranil
Denorme, Frederik
Rowley, Jesse W.
Alsobrooks, James
Parsawar, Krishna
Nieman, Marvin T.
Yost, Christian Con
Hamilton, Justin R.
Bray, Paul F.
Campbell, Robert A.
author_facet Stoller, Michelle L.
Basak, Indranil
Denorme, Frederik
Rowley, Jesse W.
Alsobrooks, James
Parsawar, Krishna
Nieman, Marvin T.
Yost, Christian Con
Hamilton, Justin R.
Bray, Paul F.
Campbell, Robert A.
author_sort Stoller, Michelle L.
collection PubMed
description Platelet-neutrophil interactions regulate ischemic vascular injury. Platelets are activated by serine proteases that cleave protease-activated receptor (PAR) amino termini, resulting in an activating tethered ligand. Neutrophils release cathepsin G (CatG) at sites of injury and inflammation, which activates PAR4 but not PAR1, although the molecular mechanism of CatG-induced PAR4 activation is unknown. We show that blockade of the canonical PAR4 thrombin cleavage site did not alter CatG-induced platelet aggregation, suggesting CatG cleaves a different site than thrombin. Mass spectrometry analysis using PAR4 N-terminus peptides revealed CatG cleavage at Ser(67)-Arg(68). A synthetic peptide, RALLLGWVPTR, representing the tethered ligand resulting from CatG proteolyzed PAR4, induced PAR4-dependent calcium flux and greater platelet aggregation than the thrombin-generated GYPGQV peptide. Mutating PAR4 Ser(67)or Arg(68) reduced CatG-induced calcium flux without affecting thrombin-induced calcium flux. Dog platelets, which contain a conserved CatG PAR4 Ser-Arg cleavage site, aggregated in response to human CatG and RALLLGWVPTR, while mouse (Ser-Gln) and rat (Ser-Glu) platelets were unresponsive. Thus, CatG amputates the PAR4 thrombin cleavage site by cleavage at Ser(67)-Arg(68) and activates PAR4 by generating a new functional tethered ligand. These findings support PAR4 as an important CatG signaling receptor and suggest a novel therapeutic approach for blocking platelet-neutrophil-mediated pathophysiologies.
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spelling pubmed-90062822022-04-13 Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand Stoller, Michelle L. Basak, Indranil Denorme, Frederik Rowley, Jesse W. Alsobrooks, James Parsawar, Krishna Nieman, Marvin T. Yost, Christian Con Hamilton, Justin R. Bray, Paul F. Campbell, Robert A. Blood Adv Stimulus Report Platelet-neutrophil interactions regulate ischemic vascular injury. Platelets are activated by serine proteases that cleave protease-activated receptor (PAR) amino termini, resulting in an activating tethered ligand. Neutrophils release cathepsin G (CatG) at sites of injury and inflammation, which activates PAR4 but not PAR1, although the molecular mechanism of CatG-induced PAR4 activation is unknown. We show that blockade of the canonical PAR4 thrombin cleavage site did not alter CatG-induced platelet aggregation, suggesting CatG cleaves a different site than thrombin. Mass spectrometry analysis using PAR4 N-terminus peptides revealed CatG cleavage at Ser(67)-Arg(68). A synthetic peptide, RALLLGWVPTR, representing the tethered ligand resulting from CatG proteolyzed PAR4, induced PAR4-dependent calcium flux and greater platelet aggregation than the thrombin-generated GYPGQV peptide. Mutating PAR4 Ser(67)or Arg(68) reduced CatG-induced calcium flux without affecting thrombin-induced calcium flux. Dog platelets, which contain a conserved CatG PAR4 Ser-Arg cleavage site, aggregated in response to human CatG and RALLLGWVPTR, while mouse (Ser-Gln) and rat (Ser-Glu) platelets were unresponsive. Thus, CatG amputates the PAR4 thrombin cleavage site by cleavage at Ser(67)-Arg(68) and activates PAR4 by generating a new functional tethered ligand. These findings support PAR4 as an important CatG signaling receptor and suggest a novel therapeutic approach for blocking platelet-neutrophil-mediated pathophysiologies. American Society of Hematology 2022-04-05 /pmc/articles/PMC9006282/ /pubmed/34883511 http://dx.doi.org/10.1182/bloodadvances.2021006133 Text en © 2022 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved.
spellingShingle Stimulus Report
Stoller, Michelle L.
Basak, Indranil
Denorme, Frederik
Rowley, Jesse W.
Alsobrooks, James
Parsawar, Krishna
Nieman, Marvin T.
Yost, Christian Con
Hamilton, Justin R.
Bray, Paul F.
Campbell, Robert A.
Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand
title Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand
title_full Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand
title_fullStr Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand
title_full_unstemmed Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand
title_short Neutrophil cathepsin G proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand
title_sort neutrophil cathepsin g proteolysis of protease-activated receptor 4 generates a novel, functional tethered ligand
topic Stimulus Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9006282/
https://www.ncbi.nlm.nih.gov/pubmed/34883511
http://dx.doi.org/10.1182/bloodadvances.2021006133
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