Cargando…

Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets

Previously we have shown in a mouse model of bronchial asthma that thrombomodulin can convert immunogenic conventional dendritic cells into tolerogenic dendritic cells while inducing its own expression on their cell surface. Thrombomodulin(+) dendritic cells are tolerogenic while thrombomodulin(−) d...

Descripción completa

Detalles Bibliográficos
Autores principales: Toda, Masaaki, Shao, Zhifei, Yamaguchi, Ken D., Takagi, Takehiro, D’Alessandro-Gabazza, Corina N., Taguchi, Osamu, Salamon, Hugh, Leung, Lawrence L. K., Gabazza, Esteban C., Morser, John
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3751914/
https://www.ncbi.nlm.nih.gov/pubmed/24009678
http://dx.doi.org/10.1371/journal.pone.0072392
_version_ 1782281701145182208
author Toda, Masaaki
Shao, Zhifei
Yamaguchi, Ken D.
Takagi, Takehiro
D’Alessandro-Gabazza, Corina N.
Taguchi, Osamu
Salamon, Hugh
Leung, Lawrence L. K.
Gabazza, Esteban C.
Morser, John
author_facet Toda, Masaaki
Shao, Zhifei
Yamaguchi, Ken D.
Takagi, Takehiro
D’Alessandro-Gabazza, Corina N.
Taguchi, Osamu
Salamon, Hugh
Leung, Lawrence L. K.
Gabazza, Esteban C.
Morser, John
author_sort Toda, Masaaki
collection PubMed
description Previously we have shown in a mouse model of bronchial asthma that thrombomodulin can convert immunogenic conventional dendritic cells into tolerogenic dendritic cells while inducing its own expression on their cell surface. Thrombomodulin(+) dendritic cells are tolerogenic while thrombomodulin(−) dendritic cells are pro-inflammatory and immunogenic. Here we hypothesized that thrombomodulin treatment of dendritic cells would modulate inflammatory gene expression. Murine bone marrow-derived dendritic cells were treated with soluble thrombomodulin and expression of surface markers was determined. Treatment with thrombomodulin reduces the expression of maturation markers and increases the expression of TM on the DC surface. Thrombomodulin treated and control dendritic cells were sorted into thrombomodulin(+) and thrombomodulin(−) dendritic cells before their mRNA was analyzed by microarray. mRNAs encoding pro-inflammatory genes and dendritic cells maturation markers were reduced while expression of cell cycle genes were increased in thrombomodulin-treated and thrombomodulin(+) dendritic cells compared to control dendritic cells and thrombomodulin(−) dendritic cells. Thrombomodulin-treated and thrombomodulin(+) dendritic cells had higher expression of 15-lipoxygenase suggesting increased synthesis of lipoxins. Thrombomodulin(+) dendritic cells produced more lipoxins than thrombomodulin(−) dendritic cells, as measured by ELISA, confirming that this pathway was upregulated. There was more phosphorylation of several cell cycle kinases in thrombomodulin(+) dendritic cells while phosphorylation of kinases involved with pro-inflammatory cytokine signaling was reduced. Cultures of thrombomodulin(+) dendritic cells contained more cells actively dividing than those of thrombomodulin(−) dendritic cells. Production of IL-10 is increased in thrombomodulin(+) dendritic cells. Antagonism of IL-10 with a neutralizing antibody inhibited the effects of thrombomodulin treatment of dendritic cells suggesting a mechanistic role for IL-10. The surface of thrombomodulin(+) dendritic cells supported activation of protein C and procarboxypeptidase B2 in a thrombomodulin-dependent manner. Thus thrombomodulin treatment increases the number of thrombomodulin(+) dendritic cells, which have significantly altered gene expression compared to thrombomodulin(−) dendritic cells in key immune function pathways.
format Online
Article
Text
id pubmed-3751914
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37519142013-09-05 Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets Toda, Masaaki Shao, Zhifei Yamaguchi, Ken D. Takagi, Takehiro D’Alessandro-Gabazza, Corina N. Taguchi, Osamu Salamon, Hugh Leung, Lawrence L. K. Gabazza, Esteban C. Morser, John PLoS One Research Article Previously we have shown in a mouse model of bronchial asthma that thrombomodulin can convert immunogenic conventional dendritic cells into tolerogenic dendritic cells while inducing its own expression on their cell surface. Thrombomodulin(+) dendritic cells are tolerogenic while thrombomodulin(−) dendritic cells are pro-inflammatory and immunogenic. Here we hypothesized that thrombomodulin treatment of dendritic cells would modulate inflammatory gene expression. Murine bone marrow-derived dendritic cells were treated with soluble thrombomodulin and expression of surface markers was determined. Treatment with thrombomodulin reduces the expression of maturation markers and increases the expression of TM on the DC surface. Thrombomodulin treated and control dendritic cells were sorted into thrombomodulin(+) and thrombomodulin(−) dendritic cells before their mRNA was analyzed by microarray. mRNAs encoding pro-inflammatory genes and dendritic cells maturation markers were reduced while expression of cell cycle genes were increased in thrombomodulin-treated and thrombomodulin(+) dendritic cells compared to control dendritic cells and thrombomodulin(−) dendritic cells. Thrombomodulin-treated and thrombomodulin(+) dendritic cells had higher expression of 15-lipoxygenase suggesting increased synthesis of lipoxins. Thrombomodulin(+) dendritic cells produced more lipoxins than thrombomodulin(−) dendritic cells, as measured by ELISA, confirming that this pathway was upregulated. There was more phosphorylation of several cell cycle kinases in thrombomodulin(+) dendritic cells while phosphorylation of kinases involved with pro-inflammatory cytokine signaling was reduced. Cultures of thrombomodulin(+) dendritic cells contained more cells actively dividing than those of thrombomodulin(−) dendritic cells. Production of IL-10 is increased in thrombomodulin(+) dendritic cells. Antagonism of IL-10 with a neutralizing antibody inhibited the effects of thrombomodulin treatment of dendritic cells suggesting a mechanistic role for IL-10. The surface of thrombomodulin(+) dendritic cells supported activation of protein C and procarboxypeptidase B2 in a thrombomodulin-dependent manner. Thus thrombomodulin treatment increases the number of thrombomodulin(+) dendritic cells, which have significantly altered gene expression compared to thrombomodulin(−) dendritic cells in key immune function pathways. Public Library of Science 2013-08-23 /pmc/articles/PMC3751914/ /pubmed/24009678 http://dx.doi.org/10.1371/journal.pone.0072392 Text en © 2013 Toda 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
Toda, Masaaki
Shao, Zhifei
Yamaguchi, Ken D.
Takagi, Takehiro
D’Alessandro-Gabazza, Corina N.
Taguchi, Osamu
Salamon, Hugh
Leung, Lawrence L. K.
Gabazza, Esteban C.
Morser, John
Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets
title Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets
title_full Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets
title_fullStr Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets
title_full_unstemmed Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets
title_short Differential Gene Expression in Thrombomodulin (TM; CD141)(+) and TM(−) Dendritic Cell Subsets
title_sort differential gene expression in thrombomodulin (tm; cd141)(+) and tm(−) dendritic cell subsets
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3751914/
https://www.ncbi.nlm.nih.gov/pubmed/24009678
http://dx.doi.org/10.1371/journal.pone.0072392
work_keys_str_mv AT todamasaaki differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT shaozhifei differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT yamaguchikend differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT takagitakehiro differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT dalessandrogabazzacorinan differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT taguchiosamu differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT salamonhugh differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT leunglawrencelk differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT gabazzaestebanc differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets
AT morserjohn differentialgeneexpressioninthrombomodulintmcd141andtmdendriticcellsubsets