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Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells

Pro-inflammatory T cells co-express multiple chemokine receptors, but the distinct functions of individual receptors on these cells are largely unknown. Human Th17 cells uniformly express the chemokine receptor CCR6, and we discovered that the subgroup of CD4(+)CCR6(+) cells that co-express CCR2 pos...

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Autores principales: Parween, Farhat, Singh, Satya P., Zhang, Hongwei H, Kathuria, Nausheen, Otaizo-Carrasquero, Francisco A., Shamsaddini, Amirhossein, Gardina, Paul J., Ganesan, Sundar, Kabat, Juraj, Lorenzi, Hernan A., Myers, Timothy G., Farber, Joshua M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9928044/
https://www.ncbi.nlm.nih.gov/pubmed/36789428
http://dx.doi.org/10.1101/2023.01.25.525561
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author Parween, Farhat
Singh, Satya P.
Zhang, Hongwei H
Kathuria, Nausheen
Otaizo-Carrasquero, Francisco A.
Shamsaddini, Amirhossein
Gardina, Paul J.
Ganesan, Sundar
Kabat, Juraj
Lorenzi, Hernan A.
Myers, Timothy G.
Farber, Joshua M.
author_facet Parween, Farhat
Singh, Satya P.
Zhang, Hongwei H
Kathuria, Nausheen
Otaizo-Carrasquero, Francisco A.
Shamsaddini, Amirhossein
Gardina, Paul J.
Ganesan, Sundar
Kabat, Juraj
Lorenzi, Hernan A.
Myers, Timothy G.
Farber, Joshua M.
author_sort Parween, Farhat
collection PubMed
description Pro-inflammatory T cells co-express multiple chemokine receptors, but the distinct functions of individual receptors on these cells are largely unknown. Human Th17 cells uniformly express the chemokine receptor CCR6, and we discovered that the subgroup of CD4(+)CCR6(+) cells that co-express CCR2 possess a pathogenic Th17 signature, can produce inflammatory cytokines independent of TCR activation, and are unusually efficient at transendothelial migration (TEM). The ligand for CCR6, CCL20, was capable of binding to activated endothelial cells (ECs) and inducing firm arrest of CCR6(+)CCR2(+) cells under conditions of flow - but CCR6 could not mediate TEM. By contrast, CCL2 and other ligands for CCR2, despite being secreted from both luminal and basal sides of ECs, failed to bind to the EC surfaces - and CCR2 could not mediate arrest. Nonetheless, CCR2 was required for TEM. To understand if CCR2’s inability to mediate arrest was due solely to an absence of EC-bound ligands, we generated a CCL2-CXCL9 chimeric chemokine that could bind to the EC surface. Although display of CCL2 on the ECs did indeed lead to CCR2-mediated arrest of CCR6(+)CCR2(+) cells, activating CCR2 with surface-bound CCL2 blocked TEM. We conclude that mediating arrest and TEM are mutually exclusive activities of chemokine receptors and/or their ligands that depend, respectively, on chemokines that bind to the EC luminal surfaces versus non-binding chemokines that form transendothelial gradients under conditions of flow. Our findings provide fundamental insights into mechanisms of lymphocyte extravasation and may lead to novel strategies to block or enhance their migration into tissue.
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spelling pubmed-99280442023-02-15 Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells Parween, Farhat Singh, Satya P. Zhang, Hongwei H Kathuria, Nausheen Otaizo-Carrasquero, Francisco A. Shamsaddini, Amirhossein Gardina, Paul J. Ganesan, Sundar Kabat, Juraj Lorenzi, Hernan A. Myers, Timothy G. Farber, Joshua M. bioRxiv Article Pro-inflammatory T cells co-express multiple chemokine receptors, but the distinct functions of individual receptors on these cells are largely unknown. Human Th17 cells uniformly express the chemokine receptor CCR6, and we discovered that the subgroup of CD4(+)CCR6(+) cells that co-express CCR2 possess a pathogenic Th17 signature, can produce inflammatory cytokines independent of TCR activation, and are unusually efficient at transendothelial migration (TEM). The ligand for CCR6, CCL20, was capable of binding to activated endothelial cells (ECs) and inducing firm arrest of CCR6(+)CCR2(+) cells under conditions of flow - but CCR6 could not mediate TEM. By contrast, CCL2 and other ligands for CCR2, despite being secreted from both luminal and basal sides of ECs, failed to bind to the EC surfaces - and CCR2 could not mediate arrest. Nonetheless, CCR2 was required for TEM. To understand if CCR2’s inability to mediate arrest was due solely to an absence of EC-bound ligands, we generated a CCL2-CXCL9 chimeric chemokine that could bind to the EC surface. Although display of CCL2 on the ECs did indeed lead to CCR2-mediated arrest of CCR6(+)CCR2(+) cells, activating CCR2 with surface-bound CCL2 blocked TEM. We conclude that mediating arrest and TEM are mutually exclusive activities of chemokine receptors and/or their ligands that depend, respectively, on chemokines that bind to the EC luminal surfaces versus non-binding chemokines that form transendothelial gradients under conditions of flow. Our findings provide fundamental insights into mechanisms of lymphocyte extravasation and may lead to novel strategies to block or enhance their migration into tissue. Cold Spring Harbor Laboratory 2023-02-13 /pmc/articles/PMC9928044/ /pubmed/36789428 http://dx.doi.org/10.1101/2023.01.25.525561 Text en This article is a US Government work.
spellingShingle Article
Parween, Farhat
Singh, Satya P.
Zhang, Hongwei H
Kathuria, Nausheen
Otaizo-Carrasquero, Francisco A.
Shamsaddini, Amirhossein
Gardina, Paul J.
Ganesan, Sundar
Kabat, Juraj
Lorenzi, Hernan A.
Myers, Timothy G.
Farber, Joshua M.
Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells
title Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells
title_full Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells
title_fullStr Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells
title_full_unstemmed Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells
title_short Chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human T cells
title_sort chemokine positioning determines mutually exclusive roles for their receptors in extravasation of pathogenic human t cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9928044/
https://www.ncbi.nlm.nih.gov/pubmed/36789428
http://dx.doi.org/10.1101/2023.01.25.525561
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