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MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets

Type 1 (T1D) and type 2 (T2D) diabetes are triggered by a combination of environmental and/or genetic factors. Maf transcription factors regulate pancreatic beta (β)-cell function, and have also been implicated in the regulation of immunomodulatory cytokines like interferon-β (IFNβ1). In this study,...

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Autores principales: Singh, Tania, Sarmiento, Luis, Luan, Cheng, Prasad, Rashmi B., Johansson, Jenny, Cataldo, Luis R., Renström, Erik, Soneji, Shamit, Cilio, Corrado, Artner, Isabella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315686/
https://www.ncbi.nlm.nih.gov/pubmed/30567413
http://dx.doi.org/10.3390/genes9120644
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author Singh, Tania
Sarmiento, Luis
Luan, Cheng
Prasad, Rashmi B.
Johansson, Jenny
Cataldo, Luis R.
Renström, Erik
Soneji, Shamit
Cilio, Corrado
Artner, Isabella
author_facet Singh, Tania
Sarmiento, Luis
Luan, Cheng
Prasad, Rashmi B.
Johansson, Jenny
Cataldo, Luis R.
Renström, Erik
Soneji, Shamit
Cilio, Corrado
Artner, Isabella
author_sort Singh, Tania
collection PubMed
description Type 1 (T1D) and type 2 (T2D) diabetes are triggered by a combination of environmental and/or genetic factors. Maf transcription factors regulate pancreatic beta (β)-cell function, and have also been implicated in the regulation of immunomodulatory cytokines like interferon-β (IFNβ1). In this study, we assessed MAFA and MAFB co-expression with pro-inflammatory cytokine signaling genes in RNA-seq data from human pancreatic islets. Interestingly, MAFA expression was strongly negatively correlated with cytokine-induced signaling (such as IFNAR1, DDX58) and T1D susceptibility genes (IFIH1), whereas correlation of these genes with MAFB was weaker. In order to evaluate if the loss of MafA altered the immune status of islets, MafA deficient mouse islets (MafA(−/−)) were assessed for inherent anti-viral response and susceptibility to enterovirus infection. MafA deficient mouse islets had elevated basal levels of Ifnβ1, Rig1 (DDX58 in humans), and Mda5 (IFIH1) which resulted in reduced virus propagation in response to coxsackievirus B3 (CVB3) infection. Moreover, an acute knockdown of MafA in β-cell lines also enhanced Rig1 and Mda5 protein levels. Our results suggest that precise regulation of MAFA levels is critical for islet cell-specific cytokine production, which is a critical parameter for the inflammatory status of pancreatic islets.
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spelling pubmed-63156862019-01-09 MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets Singh, Tania Sarmiento, Luis Luan, Cheng Prasad, Rashmi B. Johansson, Jenny Cataldo, Luis R. Renström, Erik Soneji, Shamit Cilio, Corrado Artner, Isabella Genes (Basel) Article Type 1 (T1D) and type 2 (T2D) diabetes are triggered by a combination of environmental and/or genetic factors. Maf transcription factors regulate pancreatic beta (β)-cell function, and have also been implicated in the regulation of immunomodulatory cytokines like interferon-β (IFNβ1). In this study, we assessed MAFA and MAFB co-expression with pro-inflammatory cytokine signaling genes in RNA-seq data from human pancreatic islets. Interestingly, MAFA expression was strongly negatively correlated with cytokine-induced signaling (such as IFNAR1, DDX58) and T1D susceptibility genes (IFIH1), whereas correlation of these genes with MAFB was weaker. In order to evaluate if the loss of MafA altered the immune status of islets, MafA deficient mouse islets (MafA(−/−)) were assessed for inherent anti-viral response and susceptibility to enterovirus infection. MafA deficient mouse islets had elevated basal levels of Ifnβ1, Rig1 (DDX58 in humans), and Mda5 (IFIH1) which resulted in reduced virus propagation in response to coxsackievirus B3 (CVB3) infection. Moreover, an acute knockdown of MafA in β-cell lines also enhanced Rig1 and Mda5 protein levels. Our results suggest that precise regulation of MAFA levels is critical for islet cell-specific cytokine production, which is a critical parameter for the inflammatory status of pancreatic islets. MDPI 2018-12-18 /pmc/articles/PMC6315686/ /pubmed/30567413 http://dx.doi.org/10.3390/genes9120644 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Singh, Tania
Sarmiento, Luis
Luan, Cheng
Prasad, Rashmi B.
Johansson, Jenny
Cataldo, Luis R.
Renström, Erik
Soneji, Shamit
Cilio, Corrado
Artner, Isabella
MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets
title MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets
title_full MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets
title_fullStr MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets
title_full_unstemmed MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets
title_short MafA Expression Preserves Immune Homeostasis in Human and Mouse Islets
title_sort mafa expression preserves immune homeostasis in human and mouse islets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315686/
https://www.ncbi.nlm.nih.gov/pubmed/30567413
http://dx.doi.org/10.3390/genes9120644
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