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Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration

Human lung mast cells (HLMC) express the Ca(2+)-activated K(+) channel K(Ca)3.1, which plays a crucial role in their migration to a variety of diverse chemotactic stimuli. K(Ca)3.1 activation is attenuated by the β(2)-adrenoceptor and the adenosine A(2A) receptor through a G(s)-coupled mechanism ind...

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Autores principales: Duffy, S Mark, Cruse, Glenn, Cockerill, Sarah L, Brightling, Chris E, Bradding, Peter
Formato: Texto
Lenguaje:English
Publicado: WILEY-VCH Verlag 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2699428/
https://www.ncbi.nlm.nih.gov/pubmed/18792407
http://dx.doi.org/10.1002/eji.200738106
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author Duffy, S Mark
Cruse, Glenn
Cockerill, Sarah L
Brightling, Chris E
Bradding, Peter
author_facet Duffy, S Mark
Cruse, Glenn
Cockerill, Sarah L
Brightling, Chris E
Bradding, Peter
author_sort Duffy, S Mark
collection PubMed
description Human lung mast cells (HLMC) express the Ca(2+)-activated K(+) channel K(Ca)3.1, which plays a crucial role in their migration to a variety of diverse chemotactic stimuli. K(Ca)3.1 activation is attenuated by the β(2)-adrenoceptor and the adenosine A(2A) receptor through a G(s)-coupled mechanism independent of cyclic AMP. Prostaglandin E(2) promotes degranulation and migration of mouse bone marrow-derived mast cells through the G(i)-coupled EP(3) prostanoid receptor, and induces LTC(4) and cytokine secretion from human cord blood-derived mast cells. However, PGE(2) binding to the G(s)-coupled EP(2) receptor on HLMC inhibits their degranulation. We show that EP(2) receptor engagement closes K(Ca)3.1 in HLMC. The EP(2) receptor-specific agonist butaprost was more potent than PGE(2) in this respect, and the effects of both agonists were reversed by the EP(2) receptor antagonist AH6809. Butaprost markedly inhibited HLMC migration induced by chemokine-rich airway smooth muscle-conditioned media. Interestingly, PGE(2) alone was chemotactic for HLMC at high concentrations (1 µM), but was a more potent chemoattractant for HLMC following EP(2) receptor blockade. Therefore, the G(s)-coupled EP(2) receptor closes K(Ca)3.1 in HLMC and attenuates both chemokine- and PGE(2)-dependent HLMC migration. EP(2) receptor agonists with K(Ca)3.1 modulating function may be useful for the treatment of mast cell-mediated disease.
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spelling pubmed-26994282009-06-25 Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration Duffy, S Mark Cruse, Glenn Cockerill, Sarah L Brightling, Chris E Bradding, Peter Eur J Immunol Leukocyte signaling Human lung mast cells (HLMC) express the Ca(2+)-activated K(+) channel K(Ca)3.1, which plays a crucial role in their migration to a variety of diverse chemotactic stimuli. K(Ca)3.1 activation is attenuated by the β(2)-adrenoceptor and the adenosine A(2A) receptor through a G(s)-coupled mechanism independent of cyclic AMP. Prostaglandin E(2) promotes degranulation and migration of mouse bone marrow-derived mast cells through the G(i)-coupled EP(3) prostanoid receptor, and induces LTC(4) and cytokine secretion from human cord blood-derived mast cells. However, PGE(2) binding to the G(s)-coupled EP(2) receptor on HLMC inhibits their degranulation. We show that EP(2) receptor engagement closes K(Ca)3.1 in HLMC. The EP(2) receptor-specific agonist butaprost was more potent than PGE(2) in this respect, and the effects of both agonists were reversed by the EP(2) receptor antagonist AH6809. Butaprost markedly inhibited HLMC migration induced by chemokine-rich airway smooth muscle-conditioned media. Interestingly, PGE(2) alone was chemotactic for HLMC at high concentrations (1 µM), but was a more potent chemoattractant for HLMC following EP(2) receptor blockade. Therefore, the G(s)-coupled EP(2) receptor closes K(Ca)3.1 in HLMC and attenuates both chemokine- and PGE(2)-dependent HLMC migration. EP(2) receptor agonists with K(Ca)3.1 modulating function may be useful for the treatment of mast cell-mediated disease. WILEY-VCH Verlag 2008-09 /pmc/articles/PMC2699428/ /pubmed/18792407 http://dx.doi.org/10.1002/eji.200738106 Text en Copyright © 2008 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Leukocyte signaling
Duffy, S Mark
Cruse, Glenn
Cockerill, Sarah L
Brightling, Chris E
Bradding, Peter
Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration
title Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration
title_full Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration
title_fullStr Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration
title_full_unstemmed Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration
title_short Engagement of the EP(2) prostanoid receptor closes the K(+) channel K(Ca)3.1 in human lung mast cells and attenuates their migration
title_sort engagement of the ep(2) prostanoid receptor closes the k(+) channel k(ca)3.1 in human lung mast cells and attenuates their migration
topic Leukocyte signaling
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2699428/
https://www.ncbi.nlm.nih.gov/pubmed/18792407
http://dx.doi.org/10.1002/eji.200738106
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