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Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors

Leptin is a cytokine, produced mainly by mature adipocytes, that regulates the central nervous system, mainly to suppress appetite and stimulate energy expenditure. Leptin also regulates the immune response by controlling activation of immunomodulatory cells, including eosinophils. While emerging as...

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Autores principales: Amorim, Natália R. T., Luna-Gomes, Tatiana, Gama-Almeida, Marcos, Souza-Almeida, Glaucia, Canetti, Claudio, Diaz, Bruno L., Weller, Peter F., Torres Bozza, Patricia, Maya-Monteiro, Clarissa M., Bandeira-Melo, Christianne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6160734/
https://www.ncbi.nlm.nih.gov/pubmed/30298073
http://dx.doi.org/10.3389/fimmu.2018.02139
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author Amorim, Natália R. T.
Luna-Gomes, Tatiana
Gama-Almeida, Marcos
Souza-Almeida, Glaucia
Canetti, Claudio
Diaz, Bruno L.
Weller, Peter F.
Torres Bozza, Patricia
Maya-Monteiro, Clarissa M.
Bandeira-Melo, Christianne
author_facet Amorim, Natália R. T.
Luna-Gomes, Tatiana
Gama-Almeida, Marcos
Souza-Almeida, Glaucia
Canetti, Claudio
Diaz, Bruno L.
Weller, Peter F.
Torres Bozza, Patricia
Maya-Monteiro, Clarissa M.
Bandeira-Melo, Christianne
author_sort Amorim, Natália R. T.
collection PubMed
description Leptin is a cytokine, produced mainly by mature adipocytes, that regulates the central nervous system, mainly to suppress appetite and stimulate energy expenditure. Leptin also regulates the immune response by controlling activation of immunomodulatory cells, including eosinophils. While emerging as immune regulatory cells with roles in adipose tissue homeostasis, eosinophils have a well-established ability to synthesize pro-inflammatory molecules such as lipid mediators, a key event in several inflammatory pathologies. Here, we investigated the impact and mechanisms involved in leptin-driven activation of eicosanoid-synthesizing machinery within eosinophils. Direct in vitro activation of human or mouse eosinophils with leptin elicited synthesis of lipoxygenase as well as cyclooxygenase products. Displaying selectivity, leptin triggered synthesis of LTC(4) and PGD(2), but not PGE(2), in parallel to dose-dependent induction of lipid body/lipid droplets biogenesis. While dependent on PI3K activation, leptin-driven eosinophil activation was also sensitive to pertussis toxin, indicating the involvement of G-protein coupled receptors on leptin effects. Leptin-induced lipid body-driven LTC(4) synthesis appeared to be mediated through autocrine activation of G-coupled CCR3 receptors by eosinophil-derived CCL5, inasmuch as leptin was able to trigger rapid CCL5 secretion, and neutralizing anti-RANTES or anti-CCR3 antibodies blocked lipid body assembly and LTC(4) synthesis induced by leptin. Remarkably, autocrine activation of PGD(2) G-coupled receptors DP1 and DP2 also contributes to leptin-elicited lipid body-driven LTC(4) synthesis by eosinophils in a PGD(2)-dependent fashion. Blockade of leptin-induced PGD(2) autocrine/paracrine activity by a specific synthesis inhibitor or DP1 and DP2 receptor antagonists, inhibited both lipid body biogenesis and LTC(4) synthesis induced by leptin stimulation within eosinophils. In addition, CCL5-driven CCR3 activation appears to precede PGD(2) receptor activation within eosinophils, since neutralizing anti-CCL5 or anti-CCR3 antibodies inhibited leptin-induced PGD(2) secretion, while it failed to alter PGD(2)-induced LTC(4) synthesis. Altogether, sequential activation of CCR3 and then PGD(2) receptors by autocrine ligands in response to leptin stimulation of eosinophils culminates with eosinophil activation, characterized here by assembly of lipidic cytoplasmic platforms synthesis and secretion of the pleiotropic lipid mediators, PGD(2), and LTC(4).
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spelling pubmed-61607342018-10-08 Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors Amorim, Natália R. T. Luna-Gomes, Tatiana Gama-Almeida, Marcos Souza-Almeida, Glaucia Canetti, Claudio Diaz, Bruno L. Weller, Peter F. Torres Bozza, Patricia Maya-Monteiro, Clarissa M. Bandeira-Melo, Christianne Front Immunol Immunology Leptin is a cytokine, produced mainly by mature adipocytes, that regulates the central nervous system, mainly to suppress appetite and stimulate energy expenditure. Leptin also regulates the immune response by controlling activation of immunomodulatory cells, including eosinophils. While emerging as immune regulatory cells with roles in adipose tissue homeostasis, eosinophils have a well-established ability to synthesize pro-inflammatory molecules such as lipid mediators, a key event in several inflammatory pathologies. Here, we investigated the impact and mechanisms involved in leptin-driven activation of eicosanoid-synthesizing machinery within eosinophils. Direct in vitro activation of human or mouse eosinophils with leptin elicited synthesis of lipoxygenase as well as cyclooxygenase products. Displaying selectivity, leptin triggered synthesis of LTC(4) and PGD(2), but not PGE(2), in parallel to dose-dependent induction of lipid body/lipid droplets biogenesis. While dependent on PI3K activation, leptin-driven eosinophil activation was also sensitive to pertussis toxin, indicating the involvement of G-protein coupled receptors on leptin effects. Leptin-induced lipid body-driven LTC(4) synthesis appeared to be mediated through autocrine activation of G-coupled CCR3 receptors by eosinophil-derived CCL5, inasmuch as leptin was able to trigger rapid CCL5 secretion, and neutralizing anti-RANTES or anti-CCR3 antibodies blocked lipid body assembly and LTC(4) synthesis induced by leptin. Remarkably, autocrine activation of PGD(2) G-coupled receptors DP1 and DP2 also contributes to leptin-elicited lipid body-driven LTC(4) synthesis by eosinophils in a PGD(2)-dependent fashion. Blockade of leptin-induced PGD(2) autocrine/paracrine activity by a specific synthesis inhibitor or DP1 and DP2 receptor antagonists, inhibited both lipid body biogenesis and LTC(4) synthesis induced by leptin stimulation within eosinophils. In addition, CCL5-driven CCR3 activation appears to precede PGD(2) receptor activation within eosinophils, since neutralizing anti-CCL5 or anti-CCR3 antibodies inhibited leptin-induced PGD(2) secretion, while it failed to alter PGD(2)-induced LTC(4) synthesis. Altogether, sequential activation of CCR3 and then PGD(2) receptors by autocrine ligands in response to leptin stimulation of eosinophils culminates with eosinophil activation, characterized here by assembly of lipidic cytoplasmic platforms synthesis and secretion of the pleiotropic lipid mediators, PGD(2), and LTC(4). Frontiers Media S.A. 2018-09-20 /pmc/articles/PMC6160734/ /pubmed/30298073 http://dx.doi.org/10.3389/fimmu.2018.02139 Text en Copyright © 2018 Amorim, Luna-Gomes, Gama-Almeida, Souza-Almeida, Canetti, Diaz, Weller, Torres Bozza, Maya-Monteiro and Bandeira-Melo. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Amorim, Natália R. T.
Luna-Gomes, Tatiana
Gama-Almeida, Marcos
Souza-Almeida, Glaucia
Canetti, Claudio
Diaz, Bruno L.
Weller, Peter F.
Torres Bozza, Patricia
Maya-Monteiro, Clarissa M.
Bandeira-Melo, Christianne
Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors
title Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors
title_full Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors
title_fullStr Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors
title_full_unstemmed Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors
title_short Leptin Elicits LTC(4) Synthesis by Eosinophils Mediated by Sequential Two-Step Autocrine Activation of CCR3 and PGD(2) Receptors
title_sort leptin elicits ltc(4) synthesis by eosinophils mediated by sequential two-step autocrine activation of ccr3 and pgd(2) receptors
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6160734/
https://www.ncbi.nlm.nih.gov/pubmed/30298073
http://dx.doi.org/10.3389/fimmu.2018.02139
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