Cargando…

DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria

The mycobacterial cell wall glycolipid trehalose-6,6-dimycolate (TDM) activates macrophages through the C-type lectin receptor MINCLE. Regulation of innate immune cells relies on miRNAs, which may be exploited by mycobacteria to survive and replicate in macrophages. Here, we have used macrophages de...

Descripción completa

Detalles Bibliográficos
Autores principales: Killy, Barbara, Bodendorfer, Barbara, Mages, Jörg, Ritter, Kristina, Schreiber, Jonathan, Hölscher, Christoph, Pracht, Katharina, Ekici, Arif, Jäck, Hans-Martin, Lang, Roland
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8008949/
https://www.ncbi.nlm.nih.gov/pubmed/33771876
http://dx.doi.org/10.26508/lsa.202000810
_version_ 1783672789348122624
author Killy, Barbara
Bodendorfer, Barbara
Mages, Jörg
Ritter, Kristina
Schreiber, Jonathan
Hölscher, Christoph
Pracht, Katharina
Ekici, Arif
Jäck, Hans-Martin
Lang, Roland
author_facet Killy, Barbara
Bodendorfer, Barbara
Mages, Jörg
Ritter, Kristina
Schreiber, Jonathan
Hölscher, Christoph
Pracht, Katharina
Ekici, Arif
Jäck, Hans-Martin
Lang, Roland
author_sort Killy, Barbara
collection PubMed
description The mycobacterial cell wall glycolipid trehalose-6,6-dimycolate (TDM) activates macrophages through the C-type lectin receptor MINCLE. Regulation of innate immune cells relies on miRNAs, which may be exploited by mycobacteria to survive and replicate in macrophages. Here, we have used macrophages deficient in the microprocessor component DGCR8 to investigate the impact of miRNA on the response to TDM. Deletion of DGCR8 in bone marrow progenitors reduced macrophage yield, but did not block macrophage differentiation. DGCR8-deficient macrophages showed reduced constitutive and TDM-inducible miRNA expression. RNAseq analysis revealed that they accumulated primary miRNA transcripts and displayed a modest type I IFN signature at baseline. Stimulation with TDM in the absence of DGCR8 induced overshooting expression of IFNβ and IFN-induced genes, which was blocked by antibodies to type I IFN. In contrast, signaling and transcriptional responses to recombinant IFNβ were unaltered. Infection with live Mycobacterium bovis Bacille Calmette–Guerin replicated the enhanced IFN response. Together, our results reveal an essential role for DGCR8 in curbing IFNβ expression macrophage reprogramming by mycobacteria.
format Online
Article
Text
id pubmed-8008949
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Life Science Alliance LLC
record_format MEDLINE/PubMed
spelling pubmed-80089492021-04-02 DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria Killy, Barbara Bodendorfer, Barbara Mages, Jörg Ritter, Kristina Schreiber, Jonathan Hölscher, Christoph Pracht, Katharina Ekici, Arif Jäck, Hans-Martin Lang, Roland Life Sci Alliance Research Articles The mycobacterial cell wall glycolipid trehalose-6,6-dimycolate (TDM) activates macrophages through the C-type lectin receptor MINCLE. Regulation of innate immune cells relies on miRNAs, which may be exploited by mycobacteria to survive and replicate in macrophages. Here, we have used macrophages deficient in the microprocessor component DGCR8 to investigate the impact of miRNA on the response to TDM. Deletion of DGCR8 in bone marrow progenitors reduced macrophage yield, but did not block macrophage differentiation. DGCR8-deficient macrophages showed reduced constitutive and TDM-inducible miRNA expression. RNAseq analysis revealed that they accumulated primary miRNA transcripts and displayed a modest type I IFN signature at baseline. Stimulation with TDM in the absence of DGCR8 induced overshooting expression of IFNβ and IFN-induced genes, which was blocked by antibodies to type I IFN. In contrast, signaling and transcriptional responses to recombinant IFNβ were unaltered. Infection with live Mycobacterium bovis Bacille Calmette–Guerin replicated the enhanced IFN response. Together, our results reveal an essential role for DGCR8 in curbing IFNβ expression macrophage reprogramming by mycobacteria. Life Science Alliance LLC 2021-03-26 /pmc/articles/PMC8008949/ /pubmed/33771876 http://dx.doi.org/10.26508/lsa.202000810 Text en © 2021 Killy et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Killy, Barbara
Bodendorfer, Barbara
Mages, Jörg
Ritter, Kristina
Schreiber, Jonathan
Hölscher, Christoph
Pracht, Katharina
Ekici, Arif
Jäck, Hans-Martin
Lang, Roland
DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria
title DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria
title_full DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria
title_fullStr DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria
title_full_unstemmed DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria
title_short DGCR8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria
title_sort dgcr8 deficiency impairs macrophage growth and unleashes the interferon response to mycobacteria
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8008949/
https://www.ncbi.nlm.nih.gov/pubmed/33771876
http://dx.doi.org/10.26508/lsa.202000810
work_keys_str_mv AT killybarbara dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT bodendorferbarbara dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT magesjorg dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT ritterkristina dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT schreiberjonathan dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT holscherchristoph dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT prachtkatharina dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT ekiciarif dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT jackhansmartin dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria
AT langroland dgcr8deficiencyimpairsmacrophagegrowthandunleashestheinterferonresponsetomycobacteria