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A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP

To evade the immune system, the lethal human pathogen Streptococcus pyogenes produces SpyCEP, an enzyme that cleaves the C-terminal α-helix of CXCL8, resulting in markedly impaired recruitment of neutrophils to sites of invasive infection. The basis for chemokine inactivation by SpyCEP is, however,...

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Autores principales: Goldblatt, Jennifer, Lawrenson, Richard Ashley, Muir, Luke, Dattani, Saloni, Hoffland, Ashley, Tsuchiya, Tomoko, Kanegasaki, Shiro, Sriskandan, Shiranee, Pease, James E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6526389/
https://www.ncbi.nlm.nih.gov/pubmed/31010851
http://dx.doi.org/10.4049/jimmunol.1801688
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author Goldblatt, Jennifer
Lawrenson, Richard Ashley
Muir, Luke
Dattani, Saloni
Hoffland, Ashley
Tsuchiya, Tomoko
Kanegasaki, Shiro
Sriskandan, Shiranee
Pease, James E.
author_facet Goldblatt, Jennifer
Lawrenson, Richard Ashley
Muir, Luke
Dattani, Saloni
Hoffland, Ashley
Tsuchiya, Tomoko
Kanegasaki, Shiro
Sriskandan, Shiranee
Pease, James E.
author_sort Goldblatt, Jennifer
collection PubMed
description To evade the immune system, the lethal human pathogen Streptococcus pyogenes produces SpyCEP, an enzyme that cleaves the C-terminal α-helix of CXCL8, resulting in markedly impaired recruitment of neutrophils to sites of invasive infection. The basis for chemokine inactivation by SpyCEP is, however, poorly understood, as the core domain of CXCL8 known to interact with CXCL8 receptors is unaffected by enzymatic cleavage. We examined the in vitro migration of human neutrophils and observed that their ability to efficiently navigate a CXCL8 gradient was compromised following CXCL8 cleavage by SpyCEP. SpyCEP-mediated cleavage of CXCL8 also impaired CXCL8-induced migration of transfectants expressing the human chemokine receptors CXCR1 or CXCR2. Despite possessing an intact N terminus and preserved disulfide bonds, SpyCEP-cleaved CXCL8 had impaired binding to both CXCR1 and CXCR2, pointing to a requirement for the C-terminal α-helix. SpyCEP-cleaved CXCL8 had similarly impaired binding to the glycosaminoglycan heparin. Enzymatic removal of neutrophil glycosaminoglycans was observed to ablate neutrophil navigation of a CXCL8 gradient, whereas navigation of an fMLF gradient remained largely intact. We conclude, therefore, that SpyCEP cleavage of CXCL8 results in chemokine inactivation because of a requirement for glycosaminoglycan binding in productive chemokine:receptor interactions. This may inform strategies to inhibit the activity of SpyCEP, but may also influence future approaches to inhibit unwanted chemokine-induced inflammation.
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spelling pubmed-65263892019-05-23 A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP Goldblatt, Jennifer Lawrenson, Richard Ashley Muir, Luke Dattani, Saloni Hoffland, Ashley Tsuchiya, Tomoko Kanegasaki, Shiro Sriskandan, Shiranee Pease, James E. J Immunol Infectious Disease and Host Response To evade the immune system, the lethal human pathogen Streptococcus pyogenes produces SpyCEP, an enzyme that cleaves the C-terminal α-helix of CXCL8, resulting in markedly impaired recruitment of neutrophils to sites of invasive infection. The basis for chemokine inactivation by SpyCEP is, however, poorly understood, as the core domain of CXCL8 known to interact with CXCL8 receptors is unaffected by enzymatic cleavage. We examined the in vitro migration of human neutrophils and observed that their ability to efficiently navigate a CXCL8 gradient was compromised following CXCL8 cleavage by SpyCEP. SpyCEP-mediated cleavage of CXCL8 also impaired CXCL8-induced migration of transfectants expressing the human chemokine receptors CXCR1 or CXCR2. Despite possessing an intact N terminus and preserved disulfide bonds, SpyCEP-cleaved CXCL8 had impaired binding to both CXCR1 and CXCR2, pointing to a requirement for the C-terminal α-helix. SpyCEP-cleaved CXCL8 had similarly impaired binding to the glycosaminoglycan heparin. Enzymatic removal of neutrophil glycosaminoglycans was observed to ablate neutrophil navigation of a CXCL8 gradient, whereas navigation of an fMLF gradient remained largely intact. We conclude, therefore, that SpyCEP cleavage of CXCL8 results in chemokine inactivation because of a requirement for glycosaminoglycan binding in productive chemokine:receptor interactions. This may inform strategies to inhibit the activity of SpyCEP, but may also influence future approaches to inhibit unwanted chemokine-induced inflammation. AAI 2019-06-01 2019-04-22 /pmc/articles/PMC6526389/ /pubmed/31010851 http://dx.doi.org/10.4049/jimmunol.1801688 Text en Copyright © 2019 The Authors https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the CC BY 4.0 Unported license.
spellingShingle Infectious Disease and Host Response
Goldblatt, Jennifer
Lawrenson, Richard Ashley
Muir, Luke
Dattani, Saloni
Hoffland, Ashley
Tsuchiya, Tomoko
Kanegasaki, Shiro
Sriskandan, Shiranee
Pease, James E.
A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP
title A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP
title_full A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP
title_fullStr A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP
title_full_unstemmed A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP
title_short A Requirement for Neutrophil Glycosaminoglycans in Chemokine:Receptor Interactions Is Revealed by the Streptococcal Protease SpyCEP
title_sort requirement for neutrophil glycosaminoglycans in chemokine:receptor interactions is revealed by the streptococcal protease spycep
topic Infectious Disease and Host Response
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6526389/
https://www.ncbi.nlm.nih.gov/pubmed/31010851
http://dx.doi.org/10.4049/jimmunol.1801688
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