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Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients

Uncontrolled inflammation of the airways in chronic obstructive lung diseases leads to exacerbation, accelerated lung dysfunction and respiratory insufficiency. Among these diseases, asthma affects 358 million people worldwide. Human bronchial epithelium cells (HBEC) express both anti‐inflammatory a...

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Autores principales: Fiouane, Sabrina, Chebbo, Mohamad, Beley, Sophie, Paganini, Julien, Picard, Christophe, D'Journo, Xavier‐Benoît, Thomas, Pascal‐Alexandre, Chiaroni, Jacques, Chanez, Pascal, Gras, Delphine, Di Cristofaro, Julie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9804204/
https://www.ncbi.nlm.nih.gov/pubmed/35988034
http://dx.doi.org/10.1111/tan.14782
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author Fiouane, Sabrina
Chebbo, Mohamad
Beley, Sophie
Paganini, Julien
Picard, Christophe
D'Journo, Xavier‐Benoît
Thomas, Pascal‐Alexandre
Chiaroni, Jacques
Chanez, Pascal
Gras, Delphine
Di Cristofaro, Julie
author_facet Fiouane, Sabrina
Chebbo, Mohamad
Beley, Sophie
Paganini, Julien
Picard, Christophe
D'Journo, Xavier‐Benoît
Thomas, Pascal‐Alexandre
Chiaroni, Jacques
Chanez, Pascal
Gras, Delphine
Di Cristofaro, Julie
author_sort Fiouane, Sabrina
collection PubMed
description Uncontrolled inflammation of the airways in chronic obstructive lung diseases leads to exacerbation, accelerated lung dysfunction and respiratory insufficiency. Among these diseases, asthma affects 358 million people worldwide. Human bronchial epithelium cells (HBEC) express both anti‐inflammatory and activating molecules, and their deregulated expression contribute to immune cell recruitment and activation, especially platelets (PLT) particularly involved in lung tissue inflammation in asthma context. Previous results supported that HLA‐G dysregulation in lung tissue is associated with immune cell activation. We investigated here HLA‐F expression, reported to be mobilised on immune cell surface upon activation and displaying its highest affinity for the KIR3DS1‐activating NK receptor. We explored HLA‐F transcriptional expression in HBEC; HLA‐F total expression in PBMC and HBEC collected from healthy individuals at rest and upon chemical activation and HLA‐F membrane expression in PBMC, HBEC and PLT collected from healthy individuals at rest and upon chemical activation. We compared HLA‐F transcriptional expression in HBEC from healthy individuals and asthmatic patients and its surface expression in HBEC and PLT from healthy individuals and asthmatic patients. Our results support that HLA‐F is expressed by HBEC and PLT under healthy physiological conditions and is retained in cytoplasm, barely expressed on the surface, as previously reported in immune cells. In both cell types, HLA‐F reaches the surface in the inflammatory asthma context whereas no effect is observed at the transcriptional level. Our study suggests that HLA‐F surface expression is a ubiquitous post‐transcriptional process in activated cells. It may be of therapeutic interest in controlling lung inflammation.
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spelling pubmed-98042042023-01-03 Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients Fiouane, Sabrina Chebbo, Mohamad Beley, Sophie Paganini, Julien Picard, Christophe D'Journo, Xavier‐Benoît Thomas, Pascal‐Alexandre Chiaroni, Jacques Chanez, Pascal Gras, Delphine Di Cristofaro, Julie HLA Original Articles Uncontrolled inflammation of the airways in chronic obstructive lung diseases leads to exacerbation, accelerated lung dysfunction and respiratory insufficiency. Among these diseases, asthma affects 358 million people worldwide. Human bronchial epithelium cells (HBEC) express both anti‐inflammatory and activating molecules, and their deregulated expression contribute to immune cell recruitment and activation, especially platelets (PLT) particularly involved in lung tissue inflammation in asthma context. Previous results supported that HLA‐G dysregulation in lung tissue is associated with immune cell activation. We investigated here HLA‐F expression, reported to be mobilised on immune cell surface upon activation and displaying its highest affinity for the KIR3DS1‐activating NK receptor. We explored HLA‐F transcriptional expression in HBEC; HLA‐F total expression in PBMC and HBEC collected from healthy individuals at rest and upon chemical activation and HLA‐F membrane expression in PBMC, HBEC and PLT collected from healthy individuals at rest and upon chemical activation. We compared HLA‐F transcriptional expression in HBEC from healthy individuals and asthmatic patients and its surface expression in HBEC and PLT from healthy individuals and asthmatic patients. Our results support that HLA‐F is expressed by HBEC and PLT under healthy physiological conditions and is retained in cytoplasm, barely expressed on the surface, as previously reported in immune cells. In both cell types, HLA‐F reaches the surface in the inflammatory asthma context whereas no effect is observed at the transcriptional level. Our study suggests that HLA‐F surface expression is a ubiquitous post‐transcriptional process in activated cells. It may be of therapeutic interest in controlling lung inflammation. Blackwell Publishing Ltd 2022-08-30 2022-11 /pmc/articles/PMC9804204/ /pubmed/35988034 http://dx.doi.org/10.1111/tan.14782 Text en © 2022 The Authors. HLA: Immune Response Genetics published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Fiouane, Sabrina
Chebbo, Mohamad
Beley, Sophie
Paganini, Julien
Picard, Christophe
D'Journo, Xavier‐Benoît
Thomas, Pascal‐Alexandre
Chiaroni, Jacques
Chanez, Pascal
Gras, Delphine
Di Cristofaro, Julie
Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients
title Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients
title_full Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients
title_fullStr Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients
title_full_unstemmed Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients
title_short Mobilisation of HLA‐F on the surface of bronchial epithelial cells and platelets in asthmatic patients
title_sort mobilisation of hla‐f on the surface of bronchial epithelial cells and platelets in asthmatic patients
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9804204/
https://www.ncbi.nlm.nih.gov/pubmed/35988034
http://dx.doi.org/10.1111/tan.14782
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