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Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells
Upon stimulation by histamine, human vascular endothelial cells (EC) shed a soluble form of tumour necrosis factor receptor 1 (sTNFR1) that binds up free TNF, dampening the inflammatory response. Shedding occurs through proteolytic cleavage of plasma membrane-expressed TNFR1 catalysed by TNF-α conve...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Blackwell Publishing Ltd
2012
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3202671/ https://www.ncbi.nlm.nih.gov/pubmed/21645239 http://dx.doi.org/10.1111/j.1582-4934.2011.01353.x |
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author | D’Alessio, Alessio Esposito, Bianca Giampietri, Claudia Ziparo, Elio Pober, Jordan S Filippini, Antonio |
author_facet | D’Alessio, Alessio Esposito, Bianca Giampietri, Claudia Ziparo, Elio Pober, Jordan S Filippini, Antonio |
author_sort | D’Alessio, Alessio |
collection | PubMed |
description | Upon stimulation by histamine, human vascular endothelial cells (EC) shed a soluble form of tumour necrosis factor receptor 1 (sTNFR1) that binds up free TNF, dampening the inflammatory response. Shedding occurs through proteolytic cleavage of plasma membrane-expressed TNFR1 catalysed by TNF-α converting enzyme (TACE). Surface expressed TNFR1 on EC is largely sequestered into specific plasma membrane microdomains, the lipid rafts/caveolae. The purpose of this study was to determine the role of these domains in TACE-mediated TNFR1 shedding in response to histamine. Human umbilical vein endothelial cells derived EA.hy926 cells respond to histamine via H1 receptors to shed TNFR1. Both depletion of cholesterol by methyl-β-cyclodextrin and small interfering RNA knockdown of the scaffolding protein caveolin-1 (cav-1), treatments that disrupt caveolae, reduce histamine-induced shedding of membrane-bound TNFR1. Moreover, immunoblotting of discontinuous sucrose gradient fractions show that TACE, such as TNFR1, is present within low-density membrane fractions, concentrated within caveolae, in unstimulated EA.hy926 endothelial cells and co-immunoprecipitates with cav-1. Silencing of cav-1 reduces the levels of both TACE and TNFR1 protein and displaces TACE, from low-density membrane fractions where TNFR1 remains. In summary, we show that endothelial lipid rafts/caveolae co-localize TACE to surface expressed TNFR1, promoting efficient shedding of sTNFR1 in response to histamine. |
format | Online Article Text |
id | pubmed-3202671 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Blackwell Publishing Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-32026712013-03-01 Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells D’Alessio, Alessio Esposito, Bianca Giampietri, Claudia Ziparo, Elio Pober, Jordan S Filippini, Antonio J Cell Mol Med Original Articles Upon stimulation by histamine, human vascular endothelial cells (EC) shed a soluble form of tumour necrosis factor receptor 1 (sTNFR1) that binds up free TNF, dampening the inflammatory response. Shedding occurs through proteolytic cleavage of plasma membrane-expressed TNFR1 catalysed by TNF-α converting enzyme (TACE). Surface expressed TNFR1 on EC is largely sequestered into specific plasma membrane microdomains, the lipid rafts/caveolae. The purpose of this study was to determine the role of these domains in TACE-mediated TNFR1 shedding in response to histamine. Human umbilical vein endothelial cells derived EA.hy926 cells respond to histamine via H1 receptors to shed TNFR1. Both depletion of cholesterol by methyl-β-cyclodextrin and small interfering RNA knockdown of the scaffolding protein caveolin-1 (cav-1), treatments that disrupt caveolae, reduce histamine-induced shedding of membrane-bound TNFR1. Moreover, immunoblotting of discontinuous sucrose gradient fractions show that TACE, such as TNFR1, is present within low-density membrane fractions, concentrated within caveolae, in unstimulated EA.hy926 endothelial cells and co-immunoprecipitates with cav-1. Silencing of cav-1 reduces the levels of both TACE and TNFR1 protein and displaces TACE, from low-density membrane fractions where TNFR1 remains. In summary, we show that endothelial lipid rafts/caveolae co-localize TACE to surface expressed TNFR1, promoting efficient shedding of sTNFR1 in response to histamine. Blackwell Publishing Ltd 2012-03 2012-02-28 /pmc/articles/PMC3202671/ /pubmed/21645239 http://dx.doi.org/10.1111/j.1582-4934.2011.01353.x Text en © 2012 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd |
spellingShingle | Original Articles D’Alessio, Alessio Esposito, Bianca Giampietri, Claudia Ziparo, Elio Pober, Jordan S Filippini, Antonio Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells |
title | Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells |
title_full | Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells |
title_fullStr | Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells |
title_full_unstemmed | Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells |
title_short | Plasma membrane microdomains regulate TACE-dependent TNFR1 shedding in human endothelial cells |
title_sort | plasma membrane microdomains regulate tace-dependent tnfr1 shedding in human endothelial cells |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3202671/ https://www.ncbi.nlm.nih.gov/pubmed/21645239 http://dx.doi.org/10.1111/j.1582-4934.2011.01353.x |
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