Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated Genes
Autoimmune regulator (AIRE) regulates promiscuous expression of tissue-restricted antigens in medullary epithelial cells (mTEC) of the thymus. To understand the diverse effects of AIRE, it is crucial to elucidate the molecular mechanisms underlying the process of AIRE-regulated gene expression. In t...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Frontiers Media S.A.
2018-06-01
|
Series: | Frontiers in Immunology |
Subjects: | |
Online Access: | https://www.frontiersin.org/article/10.3389/fimmu.2018.01380/full |
id |
doaj-730d39e4ab574eab90e1bff5799c2691 |
---|---|
record_format |
Article |
spelling |
doaj-730d39e4ab574eab90e1bff5799c26912020-11-25T02:23:56ZengFrontiers Media S.A.Frontiers in Immunology1664-32242018-06-01910.3389/fimmu.2018.01380327649Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated GenesThomas R. J. Lovewell0Andrew J. G. McDonagh1Andrew G. Messenger2Mimoun Azzouz3Rachid Tazi-Ahnini4Department of Infection, Immunity and Cardiovascular Disease, The Medical School, University of Sheffield, Sheffield, United KingdomDepartment of Dermatology, Royal Hallamshire Hospital, Sheffield, United KingdomDepartment of Dermatology, Royal Hallamshire Hospital, Sheffield, United KingdomDepartment of Neuroscience, The Medical School, University of Sheffield, Sheffield, United KingdomDepartment of Infection, Immunity and Cardiovascular Disease, The Medical School, University of Sheffield, Sheffield, United KingdomAutoimmune regulator (AIRE) regulates promiscuous expression of tissue-restricted antigens in medullary epithelial cells (mTEC) of the thymus. To understand the diverse effects of AIRE, it is crucial to elucidate the molecular mechanisms underlying the process of AIRE-regulated gene expression. In this study, we generated a recombinant AIRE expression variant of the TEC 1A3 human cell line, TEC 1A3 AIREhi, to determine genes targeted by AIRE, and using microarray analysis, we identified 482 genes showing significant differential expression (P < 0.05; false discovery rate <5%), with 353 upregulated and 129 downregulated by AIRE expression. Microarray data were validated by quantitative PCR, confirming the differential expression of 12 known AIRE-regulated genes. Comparison of AIRE-dependent differential expression in our cell line model with murine datasets identified 447 conserved genes with a number of transcription regulatory interactions, forming several key nodes, including STAT1, which had over 30 interactions with other AIRE-regulated genes. As STAT1 mutations cause dominant chronic mucocutaneous candidiasis and decreased STAT1 levels in monocytes of autoimmune polyglandular syndrome 1 (APS-1) patients, it was important to further characterize AIRE–STAT1 interactions. TEC 1A3AIREhi were treated with the STAT1 phosphorylation inhibitors fludarabine and LLL3 showed that phosphorylated STAT1 (p-STAT1) was not responsible for any of the observed differential expression. Moreover, treatment of TEC 1A3 AIREhi with STAT1 shRNA did not induce any significant variation in the expression of unphosphorylated STAT1 (U-STAT1) downstream genes, suggesting that these genes were directly regulated by AIRE but not via U-STAT1. The novel model system we have developed provides potential opportunities for further analysis of the pathogenesis of (APS-1) and the wider roles of the AIRE gene.https://www.frontiersin.org/article/10.3389/fimmu.2018.01380/fullAire geneSTAT1auitoimmune polyglandular syndrome 1tissue-restricted antigensTEC1 A3 cells |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Thomas R. J. Lovewell Andrew J. G. McDonagh Andrew G. Messenger Mimoun Azzouz Rachid Tazi-Ahnini |
spellingShingle |
Thomas R. J. Lovewell Andrew J. G. McDonagh Andrew G. Messenger Mimoun Azzouz Rachid Tazi-Ahnini Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated Genes Frontiers in Immunology Aire gene STAT1 auitoimmune polyglandular syndrome 1 tissue-restricted antigens TEC1 A3 cells |
author_facet |
Thomas R. J. Lovewell Andrew J. G. McDonagh Andrew G. Messenger Mimoun Azzouz Rachid Tazi-Ahnini |
author_sort |
Thomas R. J. Lovewell |
title |
Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated Genes |
title_short |
Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated Genes |
title_full |
Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated Genes |
title_fullStr |
Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated Genes |
title_full_unstemmed |
Meta-Analysis of Autoimmune Regulator-Regulated Genes in Human and Murine Models: A Novel Human Model Provides Insights on the Role of Autoimmune Regulator in Regulating STAT1 and STAT1-Regulated Genes |
title_sort |
meta-analysis of autoimmune regulator-regulated genes in human and murine models: a novel human model provides insights on the role of autoimmune regulator in regulating stat1 and stat1-regulated genes |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Immunology |
issn |
1664-3224 |
publishDate |
2018-06-01 |
description |
Autoimmune regulator (AIRE) regulates promiscuous expression of tissue-restricted antigens in medullary epithelial cells (mTEC) of the thymus. To understand the diverse effects of AIRE, it is crucial to elucidate the molecular mechanisms underlying the process of AIRE-regulated gene expression. In this study, we generated a recombinant AIRE expression variant of the TEC 1A3 human cell line, TEC 1A3 AIREhi, to determine genes targeted by AIRE, and using microarray analysis, we identified 482 genes showing significant differential expression (P < 0.05; false discovery rate <5%), with 353 upregulated and 129 downregulated by AIRE expression. Microarray data were validated by quantitative PCR, confirming the differential expression of 12 known AIRE-regulated genes. Comparison of AIRE-dependent differential expression in our cell line model with murine datasets identified 447 conserved genes with a number of transcription regulatory interactions, forming several key nodes, including STAT1, which had over 30 interactions with other AIRE-regulated genes. As STAT1 mutations cause dominant chronic mucocutaneous candidiasis and decreased STAT1 levels in monocytes of autoimmune polyglandular syndrome 1 (APS-1) patients, it was important to further characterize AIRE–STAT1 interactions. TEC 1A3AIREhi were treated with the STAT1 phosphorylation inhibitors fludarabine and LLL3 showed that phosphorylated STAT1 (p-STAT1) was not responsible for any of the observed differential expression. Moreover, treatment of TEC 1A3 AIREhi with STAT1 shRNA did not induce any significant variation in the expression of unphosphorylated STAT1 (U-STAT1) downstream genes, suggesting that these genes were directly regulated by AIRE but not via U-STAT1. The novel model system we have developed provides potential opportunities for further analysis of the pathogenesis of (APS-1) and the wider roles of the AIRE gene. |
topic |
Aire gene STAT1 auitoimmune polyglandular syndrome 1 tissue-restricted antigens TEC1 A3 cells |
url |
https://www.frontiersin.org/article/10.3389/fimmu.2018.01380/full |
work_keys_str_mv |
AT thomasrjlovewell metaanalysisofautoimmuneregulatorregulatedgenesinhumanandmurinemodelsanovelhumanmodelprovidesinsightsontheroleofautoimmuneregulatorinregulatingstat1andstat1regulatedgenes AT andrewjgmcdonagh metaanalysisofautoimmuneregulatorregulatedgenesinhumanandmurinemodelsanovelhumanmodelprovidesinsightsontheroleofautoimmuneregulatorinregulatingstat1andstat1regulatedgenes AT andrewgmessenger metaanalysisofautoimmuneregulatorregulatedgenesinhumanandmurinemodelsanovelhumanmodelprovidesinsightsontheroleofautoimmuneregulatorinregulatingstat1andstat1regulatedgenes AT mimounazzouz metaanalysisofautoimmuneregulatorregulatedgenesinhumanandmurinemodelsanovelhumanmodelprovidesinsightsontheroleofautoimmuneregulatorinregulatingstat1andstat1regulatedgenes AT rachidtaziahnini metaanalysisofautoimmuneregulatorregulatedgenesinhumanandmurinemodelsanovelhumanmodelprovidesinsightsontheroleofautoimmuneregulatorinregulatingstat1andstat1regulatedgenes |
_version_ |
1724856340167262208 |