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Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2

The soluble C-type lectin surfactant protein (SP)-A mediates lung immune responses partially via its direct effects on alveolar macrophages (AM), the main resident leukocytes exposed to antigens. SP-A modulates the AM threshold of lipopolysaccharide (LPS) activity towards an anti-inflammatory phenot...

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Autores principales: Sender, Vicky, Lang, Linda, Stamme, Cordula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607558/
https://www.ncbi.nlm.nih.gov/pubmed/23536892
http://dx.doi.org/10.1371/journal.pone.0059896
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author Sender, Vicky
Lang, Linda
Stamme, Cordula
author_facet Sender, Vicky
Lang, Linda
Stamme, Cordula
author_sort Sender, Vicky
collection PubMed
description The soluble C-type lectin surfactant protein (SP)-A mediates lung immune responses partially via its direct effects on alveolar macrophages (AM), the main resident leukocytes exposed to antigens. SP-A modulates the AM threshold of lipopolysaccharide (LPS) activity towards an anti-inflammatory phenotype both in vitro and in vivo through various mechanisms. LPS responses are tightly regulated via distinct pathways including subcellular TLR4 localization and thus ligand sensing. The cytosolic scaffold and signaling protein β-arrestin 2 acts as negative regulator of LPS-induced TLR4 activation. Here we show that SP-A neither increases TLR4 abundancy nor co-localizes with TLR4 in primary AM. SP-A significantly reduces the LPS-induced co-localization of TLR4 with the early endosome antigen (EEA) 1 by promoting the co-localization of TLR4 with the post-Golgi compartment marker Vti1b in freshly isolated AM from rats and wild-type (WT) mice, but not in β-arrestin 2(−/−) AM. Compared to WT mice pulmonary LPS-induced TNF-α release in β-arrestin 2(−/−) mice is accelerated and enhanced and exogenous SP-A fails to inhibit both lung LPS-induced TNF-α release and TLR4/EEA1 positioning. SP-A, but not LPS, enhances β-arrestin 2 protein expression in a time-dependent manner in primary rat AM. The constitutive expression of β-arrestin 2 in AM from SP-A(−/−) mice is significantly reduced compared to SP-A(+/+) mice and is rescued by SP-A. Prolonged endosome retention of LPS-induced TLR4 in AM from SP-A(−/−) mice is restored by exogenous SP-A, and is antagonized by β-arrestin 2 blocking peptides. LPS induces β-arrestin 2/TLR4 association in primary AM which is further enhanced by SP-A. The data demonstrate that SP-A modulates LPS-induced TLR4 trafficking and signaling in vitro and in vivo engaging β-arrestin 2.
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spelling pubmed-36075582013-03-27 Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2 Sender, Vicky Lang, Linda Stamme, Cordula PLoS One Research Article The soluble C-type lectin surfactant protein (SP)-A mediates lung immune responses partially via its direct effects on alveolar macrophages (AM), the main resident leukocytes exposed to antigens. SP-A modulates the AM threshold of lipopolysaccharide (LPS) activity towards an anti-inflammatory phenotype both in vitro and in vivo through various mechanisms. LPS responses are tightly regulated via distinct pathways including subcellular TLR4 localization and thus ligand sensing. The cytosolic scaffold and signaling protein β-arrestin 2 acts as negative regulator of LPS-induced TLR4 activation. Here we show that SP-A neither increases TLR4 abundancy nor co-localizes with TLR4 in primary AM. SP-A significantly reduces the LPS-induced co-localization of TLR4 with the early endosome antigen (EEA) 1 by promoting the co-localization of TLR4 with the post-Golgi compartment marker Vti1b in freshly isolated AM from rats and wild-type (WT) mice, but not in β-arrestin 2(−/−) AM. Compared to WT mice pulmonary LPS-induced TNF-α release in β-arrestin 2(−/−) mice is accelerated and enhanced and exogenous SP-A fails to inhibit both lung LPS-induced TNF-α release and TLR4/EEA1 positioning. SP-A, but not LPS, enhances β-arrestin 2 protein expression in a time-dependent manner in primary rat AM. The constitutive expression of β-arrestin 2 in AM from SP-A(−/−) mice is significantly reduced compared to SP-A(+/+) mice and is rescued by SP-A. Prolonged endosome retention of LPS-induced TLR4 in AM from SP-A(−/−) mice is restored by exogenous SP-A, and is antagonized by β-arrestin 2 blocking peptides. LPS induces β-arrestin 2/TLR4 association in primary AM which is further enhanced by SP-A. The data demonstrate that SP-A modulates LPS-induced TLR4 trafficking and signaling in vitro and in vivo engaging β-arrestin 2. Public Library of Science 2013-03-25 /pmc/articles/PMC3607558/ /pubmed/23536892 http://dx.doi.org/10.1371/journal.pone.0059896 Text en © 2013 Sender et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sender, Vicky
Lang, Linda
Stamme, Cordula
Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2
title Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2
title_full Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2
title_fullStr Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2
title_full_unstemmed Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2
title_short Surfactant Protein-A Modulates LPS-Induced TLR4 Localization and Signaling via β-Arrestin 2
title_sort surfactant protein-a modulates lps-induced tlr4 localization and signaling via β-arrestin 2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607558/
https://www.ncbi.nlm.nih.gov/pubmed/23536892
http://dx.doi.org/10.1371/journal.pone.0059896
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