Cargando…

Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment

Phagocytosis is a complex process that involves membranelipid remodeling and the attraction and retention of key effector proteins. Phagosome phenotype depends on the type of receptor engaged and can be influenced by extracellular signals. Interleukin 4 (IL-4) is a cytokine that induces the alternat...

Descripción completa

Detalles Bibliográficos
Autores principales: de Keijzer, Sandra, Meddens, Marjolein B. M., Kilic, Dilek, Joosten, Ben, Reinieren-Beeren, Inge, Lidke, Diane S., Cambi, Alessandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3143135/
https://www.ncbi.nlm.nih.gov/pubmed/21799824
http://dx.doi.org/10.1371/journal.pone.0022328
_version_ 1782208889252478976
author de Keijzer, Sandra
Meddens, Marjolein B. M.
Kilic, Dilek
Joosten, Ben
Reinieren-Beeren, Inge
Lidke, Diane S.
Cambi, Alessandra
author_facet de Keijzer, Sandra
Meddens, Marjolein B. M.
Kilic, Dilek
Joosten, Ben
Reinieren-Beeren, Inge
Lidke, Diane S.
Cambi, Alessandra
author_sort de Keijzer, Sandra
collection PubMed
description Phagocytosis is a complex process that involves membranelipid remodeling and the attraction and retention of key effector proteins. Phagosome phenotype depends on the type of receptor engaged and can be influenced by extracellular signals. Interleukin 4 (IL-4) is a cytokine that induces the alternative activation of macrophages (MΦs) upon prolonged exposure, triggering a different cell phenotype that has an altered phagocytic capacity. In contrast, the direct effects of IL-4 during phagocytosis remain unknown. Here, we investigate the impact of short-term IL-4 exposure (1 hour) during phagocytosis of IgG-opsonized yeast particles by MΦs. By time-lapse confocal microscopy of GFP-tagged lipid-sensing probes, we show that IL-4 increases the negative charge of the phagosomal membrane by prolonging the presence of the negatively charged second messenger PI(3,4,5)P3. Biochemical assays reveal an enhanced PI3K/Akt activity upon phagocytosis in the presence of IL-4. Blocking the specific class I PI3K after the onset of phagocytosis completely abrogates the IL-4-induced changes in lipid remodeling and concomitant membrane charge. Finally, we show that IL-4 direct signaling leads to a significantly prolonged retention profile of the signaling molecules Rac1 and Rab5 to the phagosomal membrane in a PI3K-dependent manner. This protracted early phagosome phenotype suggests an altered maturation, which is supported by the delayed phagosome acidification measured in the presence of IL-4. Our findings reveal that molecular differences in IL-4 levels, in the extracellular microenvironment, influence the coordination of lipid remodeling and protein recruitment, which determine phagosome phenotype and, eventually, fate. Endosomal and phagosomal membranes provide topological constraints to signaling molecules. Therefore, changes in the phagosome phenotype modulated by extracellular factors may represent an additional mechanism that regulates the outcome of phagocytosis and could have significant impact on the net biochemical output of a cell.
format Online
Article
Text
id pubmed-3143135
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31431352011-07-28 Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment de Keijzer, Sandra Meddens, Marjolein B. M. Kilic, Dilek Joosten, Ben Reinieren-Beeren, Inge Lidke, Diane S. Cambi, Alessandra PLoS One Research Article Phagocytosis is a complex process that involves membranelipid remodeling and the attraction and retention of key effector proteins. Phagosome phenotype depends on the type of receptor engaged and can be influenced by extracellular signals. Interleukin 4 (IL-4) is a cytokine that induces the alternative activation of macrophages (MΦs) upon prolonged exposure, triggering a different cell phenotype that has an altered phagocytic capacity. In contrast, the direct effects of IL-4 during phagocytosis remain unknown. Here, we investigate the impact of short-term IL-4 exposure (1 hour) during phagocytosis of IgG-opsonized yeast particles by MΦs. By time-lapse confocal microscopy of GFP-tagged lipid-sensing probes, we show that IL-4 increases the negative charge of the phagosomal membrane by prolonging the presence of the negatively charged second messenger PI(3,4,5)P3. Biochemical assays reveal an enhanced PI3K/Akt activity upon phagocytosis in the presence of IL-4. Blocking the specific class I PI3K after the onset of phagocytosis completely abrogates the IL-4-induced changes in lipid remodeling and concomitant membrane charge. Finally, we show that IL-4 direct signaling leads to a significantly prolonged retention profile of the signaling molecules Rac1 and Rab5 to the phagosomal membrane in a PI3K-dependent manner. This protracted early phagosome phenotype suggests an altered maturation, which is supported by the delayed phagosome acidification measured in the presence of IL-4. Our findings reveal that molecular differences in IL-4 levels, in the extracellular microenvironment, influence the coordination of lipid remodeling and protein recruitment, which determine phagosome phenotype and, eventually, fate. Endosomal and phagosomal membranes provide topological constraints to signaling molecules. Therefore, changes in the phagosome phenotype modulated by extracellular factors may represent an additional mechanism that regulates the outcome of phagocytosis and could have significant impact on the net biochemical output of a cell. Public Library of Science 2011-07-25 /pmc/articles/PMC3143135/ /pubmed/21799824 http://dx.doi.org/10.1371/journal.pone.0022328 Text en Keijzer 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
de Keijzer, Sandra
Meddens, Marjolein B. M.
Kilic, Dilek
Joosten, Ben
Reinieren-Beeren, Inge
Lidke, Diane S.
Cambi, Alessandra
Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment
title Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment
title_full Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment
title_fullStr Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment
title_full_unstemmed Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment
title_short Interleukin-4 Alters Early Phagosome Phenotype by Modulating Class I PI3K Dependent Lipid Remodeling and Protein Recruitment
title_sort interleukin-4 alters early phagosome phenotype by modulating class i pi3k dependent lipid remodeling and protein recruitment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3143135/
https://www.ncbi.nlm.nih.gov/pubmed/21799824
http://dx.doi.org/10.1371/journal.pone.0022328
work_keys_str_mv AT dekeijzersandra interleukin4altersearlyphagosomephenotypebymodulatingclassipi3kdependentlipidremodelingandproteinrecruitment
AT meddensmarjoleinbm interleukin4altersearlyphagosomephenotypebymodulatingclassipi3kdependentlipidremodelingandproteinrecruitment
AT kilicdilek interleukin4altersearlyphagosomephenotypebymodulatingclassipi3kdependentlipidremodelingandproteinrecruitment
AT joostenben interleukin4altersearlyphagosomephenotypebymodulatingclassipi3kdependentlipidremodelingandproteinrecruitment
AT reinierenbeereninge interleukin4altersearlyphagosomephenotypebymodulatingclassipi3kdependentlipidremodelingandproteinrecruitment
AT lidkedianes interleukin4altersearlyphagosomephenotypebymodulatingclassipi3kdependentlipidremodelingandproteinrecruitment
AT cambialessandra interleukin4altersearlyphagosomephenotypebymodulatingclassipi3kdependentlipidremodelingandproteinrecruitment