Cargando…

MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation

Acute Graft-versus-host disease (GVHD) is a major immunological complication after allogeneic hematopoietic cell transplantation and a better understanding of the molecular regulation of the disease could help to develop novel targeted therapies. Here we found that a G/C polymorphism within the huma...

Descripción completa

Detalles Bibliográficos
Autores principales: Stickel, Natalie, Hanke, Kathrin, Marschner, Dominik, Prinz, Gabriele, Köhler, Martin, Melchinger, Wolfgang, Pfeifer, Dietmar, Schmitt-Graeff, Annette, Brummer, Tilman, Heine, Annkristin, Brossart, Peter, Wolf, Dominik, von Bubnoff, Nikolas, Finke, Jürgen, Duyster, Justus, Ferrara, James, Salzer, Ulrich, Zeiser, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6231537/
https://www.ncbi.nlm.nih.gov/pubmed/28484267
http://dx.doi.org/10.1038/leu.2017.137
_version_ 1783370243572236288
author Stickel, Natalie
Hanke, Kathrin
Marschner, Dominik
Prinz, Gabriele
Köhler, Martin
Melchinger, Wolfgang
Pfeifer, Dietmar
Schmitt-Graeff, Annette
Brummer, Tilman
Heine, Annkristin
Brossart, Peter
Wolf, Dominik
von Bubnoff, Nikolas
Finke, Jürgen
Duyster, Justus
Ferrara, James
Salzer, Ulrich
Zeiser, Robert
author_facet Stickel, Natalie
Hanke, Kathrin
Marschner, Dominik
Prinz, Gabriele
Köhler, Martin
Melchinger, Wolfgang
Pfeifer, Dietmar
Schmitt-Graeff, Annette
Brummer, Tilman
Heine, Annkristin
Brossart, Peter
Wolf, Dominik
von Bubnoff, Nikolas
Finke, Jürgen
Duyster, Justus
Ferrara, James
Salzer, Ulrich
Zeiser, Robert
author_sort Stickel, Natalie
collection PubMed
description Acute Graft-versus-host disease (GVHD) is a major immunological complication after allogeneic hematopoietic cell transplantation and a better understanding of the molecular regulation of the disease could help to develop novel targeted therapies. Here we found that a G/C polymorphism within the human microRNA-146a (miR-146a) gene of transplant-recipients, which causes reduced miR-146a levels, was strongly associated with the risk of developing severe acute GVHD (n=289). In mice, deficiency of miR-146a in the hematopoietic system or transfer of recipient-type miR 146a(-/-) dendritic cells (DCs) enhanced GVHD, while miR-146a mimic-transfected-DCs ameliorated disease. Mechanistically, lack of miR-146a enhanced JAK2 STAT1-pathway activity, which led to higher expression of class II-transactivator (CIITA) and consecutively increased MHCII-levels on DCs. Inhibition of JAK1/2 or CIITA knockdown in DCs prevented miR-146a(-/-) DC-induced GVHD exacerbation. Consistent with our findings in mice, patients with the miR-146a polymorphism rs2910164 in hematopoietic cells displayed higher MHCII levels on monocytes, which could be targeted by JAK1/2-inhibition. Our findings indicate that the miR-146a polymorphism rs2910164 identifies patients at high risk for GVHD before allo HCT. Functionally we show that miR-146a acts as a central regulator of recipient-type DC activation during GVHD by dampening the pro-inflammatory JAK-STAT/CIITA/MHCII axis, which provides a scientific rationale for early JAK1/2-inhibition in selected patients.
format Online
Article
Text
id pubmed-6231537
institution National Center for Biotechnology Information
language English
publishDate 2017
record_format MEDLINE/PubMed
spelling pubmed-62315372018-11-12 MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation Stickel, Natalie Hanke, Kathrin Marschner, Dominik Prinz, Gabriele Köhler, Martin Melchinger, Wolfgang Pfeifer, Dietmar Schmitt-Graeff, Annette Brummer, Tilman Heine, Annkristin Brossart, Peter Wolf, Dominik von Bubnoff, Nikolas Finke, Jürgen Duyster, Justus Ferrara, James Salzer, Ulrich Zeiser, Robert Leukemia Article Acute Graft-versus-host disease (GVHD) is a major immunological complication after allogeneic hematopoietic cell transplantation and a better understanding of the molecular regulation of the disease could help to develop novel targeted therapies. Here we found that a G/C polymorphism within the human microRNA-146a (miR-146a) gene of transplant-recipients, which causes reduced miR-146a levels, was strongly associated with the risk of developing severe acute GVHD (n=289). In mice, deficiency of miR-146a in the hematopoietic system or transfer of recipient-type miR 146a(-/-) dendritic cells (DCs) enhanced GVHD, while miR-146a mimic-transfected-DCs ameliorated disease. Mechanistically, lack of miR-146a enhanced JAK2 STAT1-pathway activity, which led to higher expression of class II-transactivator (CIITA) and consecutively increased MHCII-levels on DCs. Inhibition of JAK1/2 or CIITA knockdown in DCs prevented miR-146a(-/-) DC-induced GVHD exacerbation. Consistent with our findings in mice, patients with the miR-146a polymorphism rs2910164 in hematopoietic cells displayed higher MHCII levels on monocytes, which could be targeted by JAK1/2-inhibition. Our findings indicate that the miR-146a polymorphism rs2910164 identifies patients at high risk for GVHD before allo HCT. Functionally we show that miR-146a acts as a central regulator of recipient-type DC activation during GVHD by dampening the pro-inflammatory JAK-STAT/CIITA/MHCII axis, which provides a scientific rationale for early JAK1/2-inhibition in selected patients. 2017-05-09 2017-12 /pmc/articles/PMC6231537/ /pubmed/28484267 http://dx.doi.org/10.1038/leu.2017.137 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Stickel, Natalie
Hanke, Kathrin
Marschner, Dominik
Prinz, Gabriele
Köhler, Martin
Melchinger, Wolfgang
Pfeifer, Dietmar
Schmitt-Graeff, Annette
Brummer, Tilman
Heine, Annkristin
Brossart, Peter
Wolf, Dominik
von Bubnoff, Nikolas
Finke, Jürgen
Duyster, Justus
Ferrara, James
Salzer, Ulrich
Zeiser, Robert
MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation
title MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation
title_full MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation
title_fullStr MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation
title_full_unstemmed MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation
title_short MicroRNA-146a reduces MHC-II expression via targeting JAK/STAT-signaling in dendritic cells after stem cell transplantation
title_sort microrna-146a reduces mhc-ii expression via targeting jak/stat-signaling in dendritic cells after stem cell transplantation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6231537/
https://www.ncbi.nlm.nih.gov/pubmed/28484267
http://dx.doi.org/10.1038/leu.2017.137
work_keys_str_mv AT stickelnatalie microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT hankekathrin microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT marschnerdominik microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT prinzgabriele microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT kohlermartin microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT melchingerwolfgang microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT pfeiferdietmar microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT schmittgraeffannette microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT brummertilman microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT heineannkristin microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT brossartpeter microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT wolfdominik microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT vonbubnoffnikolas microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT finkejurgen microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT duysterjustus microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT ferrarajames microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT salzerulrich microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation
AT zeiserrobert microrna146areducesmhciiexpressionviatargetingjakstatsignalingindendriticcellsafterstemcelltransplantation