Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.

Granzyme B (GrB) is a pro-apoptotic serine protease that contributes to immune-mediated target cell apoptosis. However, during inflammation, GrB accumulates in the extracellular space, retains its activity, and is capable of cleaving extracellular matrix (ECM) proteins. Recent studies have implicate...

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Main Authors: Wendy A Boivin, Marlo Shackleford, Amanda Vanden Hoek, Hongyan Zhao, Tillie L Hackett, Darryl A Knight, David J Granville
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3316562?pdf=render
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spelling doaj-ad5dc085bc9d481f91f4d6709fe523c02020-11-25T02:32:14ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0173e3316310.1371/journal.pone.0033163Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.Wendy A BoivinMarlo ShacklefordAmanda Vanden HoekHongyan ZhaoTillie L HackettDarryl A KnightDavid J GranvilleGranzyme B (GrB) is a pro-apoptotic serine protease that contributes to immune-mediated target cell apoptosis. However, during inflammation, GrB accumulates in the extracellular space, retains its activity, and is capable of cleaving extracellular matrix (ECM) proteins. Recent studies have implicated a pathogenic extracellular role for GrB in cardiovascular disease, yet the pathophysiological consequences of extracellular GrB activity remain largely unknown. The objective of this study was to identify proteoglycan (PG) substrates of GrB and examine the ability of GrB to release PG-sequestered TGF-β1 into the extracellular milieu.Three extracellular GrB PG substrates were identified; decorin, biglycan and betaglycan. As all of these PGs sequester active TGF-β1, cytokine release assays were conducted to establish if GrB-mediated PG cleavage induced TGF-β1 release. Our data confirmed that GrB liberated TGF-β1 from all three substrates as well as from endogenous ECM and this process was inhibited by the GrB inhibitor 3,4-dichloroisocoumarin. The released TGF-β1 retained its activity as indicated by the induction of SMAD-3 phosphorylation in human coronary artery smooth muscle cells.In addition to contributing to ECM degradation and the loss of tissue structural integrity in vivo, increased extracellular GrB activity is also capable of inducing the release of active TGF-β1 from PGs.http://europepmc.org/articles/PMC3316562?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Wendy A Boivin
Marlo Shackleford
Amanda Vanden Hoek
Hongyan Zhao
Tillie L Hackett
Darryl A Knight
David J Granville
spellingShingle Wendy A Boivin
Marlo Shackleford
Amanda Vanden Hoek
Hongyan Zhao
Tillie L Hackett
Darryl A Knight
David J Granville
Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.
PLoS ONE
author_facet Wendy A Boivin
Marlo Shackleford
Amanda Vanden Hoek
Hongyan Zhao
Tillie L Hackett
Darryl A Knight
David J Granville
author_sort Wendy A Boivin
title Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.
title_short Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.
title_full Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.
title_fullStr Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.
title_full_unstemmed Granzyme B cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.
title_sort granzyme b cleaves decorin, biglycan and soluble betaglycan, releasing active transforming growth factor-β1.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Granzyme B (GrB) is a pro-apoptotic serine protease that contributes to immune-mediated target cell apoptosis. However, during inflammation, GrB accumulates in the extracellular space, retains its activity, and is capable of cleaving extracellular matrix (ECM) proteins. Recent studies have implicated a pathogenic extracellular role for GrB in cardiovascular disease, yet the pathophysiological consequences of extracellular GrB activity remain largely unknown. The objective of this study was to identify proteoglycan (PG) substrates of GrB and examine the ability of GrB to release PG-sequestered TGF-β1 into the extracellular milieu.Three extracellular GrB PG substrates were identified; decorin, biglycan and betaglycan. As all of these PGs sequester active TGF-β1, cytokine release assays were conducted to establish if GrB-mediated PG cleavage induced TGF-β1 release. Our data confirmed that GrB liberated TGF-β1 from all three substrates as well as from endogenous ECM and this process was inhibited by the GrB inhibitor 3,4-dichloroisocoumarin. The released TGF-β1 retained its activity as indicated by the induction of SMAD-3 phosphorylation in human coronary artery smooth muscle cells.In addition to contributing to ECM degradation and the loss of tissue structural integrity in vivo, increased extracellular GrB activity is also capable of inducing the release of active TGF-β1 from PGs.
url http://europepmc.org/articles/PMC3316562?pdf=render
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