Type |
Details |
Score |
Gene |
Type: |
gene |
Organism: |
human |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
frog, western clawed |
|
•
•
•
•
•
|
Gene |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
dog, domestic |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
chimpanzee |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
cattle |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
chicken |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
zebrafish |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
macaque, rhesus |
|
•
•
•
•
•
|
Protein Domain |
Type: |
Family |
Description: |
This family represents the Interferon regulatory factor 8 (IRF8) which plays essential roles in host defense, hematopoietic differentiation, and immune response. It is a transcription factor that specifically binds to the upstream regulatory region of type I interferon (IFN) and IFN-inducible MHC class I genes (the interferon consensus sequence (ICS)) []. It may act as a transcriptional activator or repressor and may play a negative regulatory role in cells of the immune system. It is involved in CD8+ dendritic cell differentiation by forming a complex with the BATF-JUNB heterodimer in immune cells, leading to recognition of AICE sequence (5'-TGAnTCA/GAAA-3'), an immune-specific regulatory element, followed by cooperative binding of BATF and IRF8 and activation of genes. It may be required for the development of plasmacytoid dendritic cells (pDCs), which produce most of the type I IFN in response to viral infection. It also positively regulates macroautophagy in dendritic cells [].This entry also includes some uncharacterised virus proteins that contain the IRF tryptophan pentad repeat, which is a DNA-binding domain. |
|
•
•
•
•
•
|
Protein Coding Gene |
Type: |
protein_coding_gene |
Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
Publication |
First Author: |
Liu TT |
Year: |
2023 |
Journal: |
Genes Dev |
Title: |
Cis interactions in the Irf8 locus regulate stage-dependent enhancer activation. |
Volume: |
37 |
Issue: |
7-8 |
Pages: |
291-302 |
|
•
•
•
•
•
|
Publication |
First Author: |
Durai V |
Year: |
2019 |
Journal: |
Nat Immunol |
Title: |
Cryptic activation of an Irf8 enhancer governs cDC1 fate specification. |
Volume: |
20 |
Issue: |
9 |
Pages: |
1161-1173 |
|
•
•
•
•
•
|
Publication |
First Author: |
Bagadia P |
Year: |
2019 |
Journal: |
Nat Immunol |
Title: |
An Nfil3-Zeb2-Id2 pathway imposes Irf8 enhancer switching during cDC1 development. |
Volume: |
20 |
Issue: |
9 |
Pages: |
1174-1185 |
|
•
•
•
•
•
|
Publication |
First Author: |
Wang H |
Year: |
2008 |
Journal: |
Blood |
Title: |
IRF8 regulates B-cell lineage specification, commitment, and differentiation. |
Volume: |
112 |
Issue: |
10 |
Pages: |
4028-38 |
|
•
•
•
•
•
|
Publication |
First Author: |
Pathak S |
Year: |
2013 |
Journal: |
J Immunol |
Title: |
A role for IRF8 in B cell anergy. |
Volume: |
191 |
Issue: |
12 |
Pages: |
6222-30 |
|
•
•
•
•
•
|
Publication |
First Author: |
Karki R |
Year: |
2018 |
Journal: |
Cell |
Title: |
IRF8 Regulates Transcription of Naips for NLRC4 Inflammasome Activation. |
Volume: |
173 |
Issue: |
4 |
Pages: |
920-933.e13 |
|
•
•
•
•
•
|
Publication |
First Author: |
Li HS |
Year: |
2012 |
Journal: |
PLoS One |
Title: |
miR-22 controls Irf8 mRNA abundance and murine dendritic cell development. |
Volume: |
7 |
Issue: |
12 |
Pages: |
e52341 |
|
•
•
•
•
•
|
Publication |
First Author: |
Jiang DS |
Year: |
2014 |
Journal: |
Nat Commun |
Title: |
IRF8 suppresses pathological cardiac remodelling by inhibiting calcineurin signalling. |
Volume: |
5 |
|
Pages: |
3303 |
|
•
•
•
•
•
|
Publication |
First Author: |
Karki R |
Year: |
2020 |
Journal: |
J Immunol |
Title: |
IRF8 Regulates Gram-Negative Bacteria-Mediated NLRP3 Inflammasome Activation and Cell Death. |
Volume: |
204 |
Issue: |
9 |
Pages: |
2514-2522 |
|
•
•
•
•
•
|
Publication |
First Author: |
Agod Z |
Year: |
2018 |
Journal: |
Front Immunol |
Title: |
Signaling Lymphocyte Activation Molecule Family 5 Enhances Autophagy and Fine-Tunes Cytokine Response in Monocyte-Derived Dendritic Cells via Stabilization of Interferon Regulatory Factor 8. |
Volume: |
9 |
|
Pages: |
62 |
|
•
•
•
•
•
|
Publication |
First Author: |
Salem S |
Year: |
2014 |
Journal: |
Blood |
Title: |
Functional characterization of the human dendritic cell immunodeficiency associated with the IRF8(K108E) mutation. |
Volume: |
124 |
Issue: |
12 |
Pages: |
1894-904 |
|
•
•
•
•
•
|
Publication |
First Author: |
Adams NM |
Year: |
2018 |
Journal: |
Immunity |
Title: |
Transcription Factor IRF8 Orchestrates the Adaptive Natural Killer Cell Response. |
Volume: |
48 |
Issue: |
6 |
Pages: |
1172-1182.e6 |
|
•
•
•
•
•
|
Publication |
First Author: |
Pang SH |
Year: |
2016 |
Journal: |
Leukemia |
Title: |
PU.1 cooperates with IRF4 and IRF8 to suppress pre-B-cell leukemia. |
Volume: |
30 |
Issue: |
6 |
Pages: |
1375-87 |
|
•
•
•
•
•
|
Publication |
First Author: |
Gupta M |
Year: |
2015 |
Journal: |
Nat Commun |
Title: |
IRF8 directs stress-induced autophagy in macrophages and promotes clearance of Listeria monocytogenes. |
Volume: |
6 |
|
Pages: |
6379 |
|
•
•
•
•
•
|
Publication |
First Author: |
Yang J |
Year: |
2011 |
Journal: |
J Immunol |
Title: |
Cutting edge: IRF8 regulates Bax transcription in vivo in primary myeloid cells. |
Volume: |
187 |
Issue: |
9 |
Pages: |
4426-30 |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
295
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Publication |
First Author: |
Tzetzo SL |
Year: |
2024 |
Journal: |
iScience |
Title: |
Downregulation of IRF8 in alveolar macrophages by G-CSF promotes metastatic tumor progression. |
Volume: |
27 |
Issue: |
3 |
Pages: |
109187 |
|
•
•
•
•
•
|
Publication |
First Author: |
Zhang Y |
Year: |
2020 |
Journal: |
Cell Rep |
Title: |
SENP3 Suppresses Osteoclastogenesis by De-conjugating SUMO2/3 from IRF8 in Bone Marrow-Derived Monocytes. |
Volume: |
30 |
Issue: |
6 |
Pages: |
1951-1963.e4 |
|
•
•
•
•
•
|
Publication |
First Author: |
Mace EM |
Year: |
2017 |
Journal: |
J Clin Invest |
Title: |
Biallelic mutations in IRF8 impair human NK cell maturation and function. |
Volume: |
127 |
Issue: |
1 |
Pages: |
306-320 |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
151
 |
Fragment?: |
true |
|
•
•
•
•
•
|
Publication |
First Author: |
Nixon BG |
Year: |
2022 |
Journal: |
Immunity |
Title: |
Tumor-associated macrophages expressing the transcription factor IRF8 promote T cell exhaustion in cancer. |
Volume: |
55 |
Issue: |
11 |
Pages: |
2044-2058.e5 |
|
•
•
•
•
•
|
Publication |
First Author: |
Ouyang X |
Year: |
2011 |
Journal: |
Nat Commun |
Title: |
Transcription factor IRF8 directs a silencing programme for TH17 cell differentiation. |
Volume: |
2 |
|
Pages: |
314 |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
424
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
424
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
424
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
424
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
424
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
333
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
424
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
424
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Publication |
First Author: |
Yoshida Y |
Year: |
2014 |
Journal: |
Immunity |
Title: |
The transcription factor IRF8 activates integrin-mediated TGF-β signaling and promotes neuroinflammation. |
Volume: |
40 |
Issue: |
2 |
Pages: |
187-98 |
|
•
•
•
•
•
|
Publication |
First Author: |
Luda KM |
Year: |
2016 |
Journal: |
Immunity |
Title: |
IRF8 Transcription-Factor-Dependent Classical Dendritic Cells Are Essential for Intestinal T Cell Homeostasis. |
Volume: |
44 |
Issue: |
4 |
Pages: |
860-74 |
|
•
•
•
•
•
|
Publication |
First Author: |
Masuda T |
Year: |
2012 |
Journal: |
Cell Rep |
Title: |
IRF8 is a critical transcription factor for transforming microglia into a reactive phenotype. |
Volume: |
1 |
Issue: |
4 |
Pages: |
334-340 |
|
•
•
•
•
•
|
Publication |
First Author: |
Tailor P |
Year: |
2008 |
Journal: |
Blood |
Title: |
The BXH2 mutation in IRF8 differentially impairs dendritic cell subset development in the mouse. |
Volume: |
111 |
Issue: |
4 |
Pages: |
1942-5 |
|
•
•
•
•
•
|
Publication |
First Author: |
Murakami K |
Year: |
2021 |
Journal: |
Nat Immunol |
Title: |
A RUNX-CBFβ-driven enhancer directs the Irf8 dose-dependent lineage choice between DCs and monocytes. |
Volume: |
22 |
Issue: |
3 |
Pages: |
301-311 |
|
•
•
•
•
•
|
Publication |
First Author: |
Xu H |
Year: |
2012 |
Journal: |
Nat Immunol |
Title: |
Notch-RBP-J signaling regulates the transcription factor IRF8 to promote inflammatory macrophage polarization. |
Volume: |
13 |
Issue: |
7 |
Pages: |
642-50 |
|
•
•
•
•
•
|
Publication |
First Author: |
Zhou N |
Year: |
2019 |
Journal: |
Protein Cell |
Title: |
Transcriptional mechanism of IRF8 and PU.1 governs microglial activation in neurodegenerative condition. |
Volume: |
10 |
Issue: |
2 |
Pages: |
87-103 |
|
•
•
•
•
•
|
Publication |
First Author: |
Carotta S |
Year: |
2014 |
Journal: |
J Exp Med |
Title: |
The transcription factors IRF8 and PU.1 negatively regulate plasma cell differentiation. |
Volume: |
211 |
Issue: |
11 |
Pages: |
2169-81 |
|
•
•
•
•
•
|
Publication |
First Author: |
Hu X |
Year: |
2011 |
Journal: |
Cancer Res |
Title: |
IRF8 regulates acid ceramidase expression to mediate apoptosis and suppresses myelogeneous leukemia. |
Volume: |
71 |
Issue: |
8 |
Pages: |
2882-91 |
|
•
•
•
•
•
|
Publication |
First Author: |
Zhang R |
Year: |
2019 |
Journal: |
J Autoimmun |
Title: |
T follicular helper cells restricted by IRF8 contribute to T cell-mediated inflammation. |
Volume: |
96 |
|
Pages: |
113-122 |
|
•
•
•
•
•
|
Publication |
First Author: |
Gaillard C |
Year: |
2018 |
Journal: |
Blood Adv |
Title: |
Identification of IRF8 as a potent tumor suppressor in murine acute promyelocytic leukemia. |
Volume: |
2 |
Issue: |
19 |
Pages: |
2462-2466 |
|
•
•
•
•
•
|
Publication |
First Author: |
Thumbigere-Math V |
Year: |
2019 |
Journal: |
J Bone Miner Res |
Title: |
Inactivating Mutation in IRF8 Promotes Osteoclast Transcriptional Programs and Increases Susceptibility to Tooth Root Resorption. |
Volume: |
34 |
Issue: |
6 |
Pages: |
1155-1168 |
|
•
•
•
•
•
|
Publication |
First Author: |
Xu H |
Year: |
2023 |
Journal: |
Elife |
Title: |
A lncRNA identifies Irf8 enhancer element in negative feedback control of dendritic cell differentiation. |
Volume: |
12 |
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Kurotaki D |
Year: |
2019 |
Journal: |
Blood |
Title: |
Epigenetic control of early dendritic cell lineage specification by the transcription factor IRF8 in mice. |
Volume: |
133 |
Issue: |
17 |
Pages: |
1803-1813 |
|
•
•
•
•
•
|
Publication |
First Author: |
Yáñez A |
Year: |
2015 |
Journal: |
Blood |
Title: |
IRF8 acts in lineage-committed rather than oligopotent progenitors to control neutrophil vs monocyte production. |
Volume: |
125 |
Issue: |
9 |
Pages: |
1452-9 |
|
•
•
•
•
•
|
Publication |
First Author: |
Wang H |
Year: |
2014 |
Journal: |
J Immunol |
Title: |
A reporter mouse reveals lineage-specific and heterogeneous expression of IRF8 during lymphoid and myeloid cell differentiation. |
Volume: |
193 |
Issue: |
4 |
Pages: |
1766-77 |
|
•
•
•
•
•
|
Publication |
First Author: |
Schönheit J |
Year: |
2013 |
Journal: |
Cell Rep |
Title: |
PU.1 level-directed chromatin structure remodeling at the Irf8 gene drives dendritic cell commitment. |
Volume: |
3 |
Issue: |
5 |
Pages: |
1617-28 |
|
•
•
•
•
•
|
Publication |
First Author: |
McDaniel MM |
Year: |
2020 |
Journal: |
Cell Rep |
Title: |
Suppression of Inflammasome Activation by IRF8 and IRF4 in cDCs Is Critical for T Cell Priming. |
Volume: |
31 |
Issue: |
5 |
Pages: |
107604 |
|
•
•
•
•
•
|
Publication |
First Author: |
Kim S |
Year: |
2020 |
Journal: |
Immunity |
Title: |
High Amount of Transcription Factor IRF8 Engages AP1-IRF Composite Elements in Enhancers to Direct Type 1 Conventional Dendritic Cell Identity. |
Volume: |
53 |
Issue: |
4 |
Pages: |
759-774.e9 |
|
•
•
•
•
•
|
Publication |
First Author: |
Scheller M |
Year: |
2013 |
Journal: |
J Exp Med |
Title: |
Cross talk between Wnt/β-catenin and Irf8 in leukemia progression and drug resistance. |
Volume: |
210 |
Issue: |
11 |
Pages: |
2239-56 |
|
•
•
•
•
•
|
Publication |
First Author: |
Saeki K |
Year: |
2024 |
Journal: |
Nat Immunol |
Title: |
IRF8 defines the epigenetic landscape in postnatal microglia, thereby directing their transcriptome programs. |
Volume: |
25 |
Issue: |
10 |
Pages: |
1928-1942 |
|
•
•
•
•
•
|
Publication |
First Author: |
Lança T |
Year: |
2022 |
Journal: |
Immunity |
Title: |
IRF8 deficiency induces the transcriptional, functional, and epigenetic reprogramming of cDC1 into the cDC2 lineage. |
Volume: |
55 |
Issue: |
8 |
Pages: |
1431-1447.e11 |
|
•
•
•
•
•
|
Publication |
First Author: |
Yamasaki A |
Year: |
2024 |
Journal: |
Commun Biol |
Title: |
IRF8 and MAFB drive distinct transcriptional machineries in different resident macrophages of the central nervous system. |
Volume: |
7 |
Issue: |
1 |
Pages: |
896 |
|
•
•
•
•
•
|
Publication |
First Author: |
Ototake Y |
Year: |
2021 |
Journal: |
J Invest Dermatol |
Title: |
Downregulated IRF8 in Monocytes and Macrophages of Patients with Systemic Sclerosis May Aggravate the Fibrotic Phenotype. |
Volume: |
141 |
Issue: |
8 |
Pages: |
1954-1963 |
|
•
•
•
•
•
|
Publication |
First Author: |
Ibrahim ML |
Year: |
2018 |
Journal: |
Cell Rep |
Title: |
Myeloid-Derived Suppressor Cells Produce IL-10 to Elicit DNMT3b-Dependent IRF8 Silencing to Promote Colitis-Associated Colon Tumorigenesis. |
Volume: |
25 |
Issue: |
11 |
Pages: |
3036-3046.e6 |
|
•
•
•
•
•
|
Publication |
First Author: |
Sichien D |
Year: |
2016 |
Journal: |
Immunity |
Title: |
IRF8 Transcription Factor Controls Survival and Function of Terminally Differentiated Conventional and Plasmacytoid Dendritic Cells, Respectively. |
Volume: |
45 |
Issue: |
3 |
Pages: |
626-640 |
|
•
•
•
•
•
|
Publication |
First Author: |
Grajales-Reyes GE |
Year: |
2015 |
Journal: |
Nat Immunol |
Title: |
Batf3 maintains autoactivation of Irf8 for commitment of a CD8α(+) conventional DC clonogenic progenitor. |
Volume: |
16 |
Issue: |
7 |
Pages: |
708-17 |
|
•
•
•
•
•
|
Publication |
First Author: |
Yamamoto M |
Year: |
2011 |
Journal: |
PLoS One |
Title: |
Shared and distinct functions of the transcription factors IRF4 and IRF8 in myeloid cell development. |
Volume: |
6 |
Issue: |
10 |
Pages: |
e25812 |
|
•
•
•
•
•
|
Publication |
First Author: |
Bajaña S |
Year: |
2016 |
Journal: |
J Immunol |
Title: |
IRF4 and IRF8 Act in CD11c+ Cells To Regulate Terminal Differentiation of Lung Tissue Dendritic Cells. |
Volume: |
196 |
Issue: |
4 |
Pages: |
1666-77 |
|
•
•
•
•
•
|
Publication |
First Author: |
Yan M |
Year: |
2016 |
Journal: |
J Immunol |
Title: |
Cutting Edge: Expression of IRF8 in Gastric Epithelial Cells Confers Protective Innate Immunity against Helicobacter pylori Infection. |
Volume: |
196 |
Issue: |
5 |
Pages: |
1999-2003 |
|
•
•
•
•
•
|
Publication |
First Author: |
Hagemeyer N |
Year: |
2016 |
Journal: |
EMBO J |
Title: |
Transcriptome-based profiling of yolk sac-derived macrophages reveals a role for Irf8 in macrophage maturation. |
Volume: |
35 |
Issue: |
16 |
Pages: |
1730-44 |
|
•
•
•
•
•
|
Publication |
First Author: |
Sasaki H |
Year: |
2015 |
Journal: |
Blood |
Title: |
Transcription factor IRF8 plays a critical role in the development of murine basophils and mast cells. |
Volume: |
125 |
Issue: |
2 |
Pages: |
358-69 |
|
•
•
•
•
•
|
Publication |
First Author: |
Baccala R |
Year: |
2013 |
Journal: |
Proc Natl Acad Sci U S A |
Title: |
Essential requirement for IRF8 and SLC15A4 implicates plasmacytoid dendritic cells in the pathogenesis of lupus. |
Volume: |
110 |
Issue: |
8 |
Pages: |
2940-5 |
|
•
•
•
•
•
|
Publication |
First Author: |
Kurotaki D |
Year: |
2018 |
Journal: |
Cell Rep |
Title: |
Transcription Factor IRF8 Governs Enhancer Landscape Dynamics in Mononuclear Phagocyte Progenitors. |
Volume: |
22 |
Issue: |
10 |
Pages: |
2628-2641 |
|
•
•
•
•
•
|
Publication |
First Author: |
Lee J |
Year: |
2017 |
Journal: |
Nat Immunol |
Title: |
Lineage specification of human dendritic cells is marked by IRF8 expression in hematopoietic stem cells and multipotent progenitors. |
Volume: |
18 |
Issue: |
8 |
Pages: |
877-888 |
|
•
•
•
•
•
|
Publication |
First Author: |
Shin DM |
Year: |
2011 |
Journal: |
PLoS One |
Title: |
IRF8 governs expression of genes involved in innate and adaptive immunity in human and mouse germinal center B cells. |
Volume: |
6 |
Issue: |
11 |
Pages: |
e27384 |
|
•
•
•
•
•
|
Publication |
First Author: |
Wang H |
Year: |
2019 |
Journal: |
Proc Natl Acad Sci U S A |
Title: |
Transcription factors IRF8 and PU.1 are required for follicular B cell development and BCL6-driven germinal center responses. |
Volume: |
116 |
Issue: |
19 |
Pages: |
9511-9520 |
|
•
•
•
•
•
|
Publication |
First Author: |
Fortier A |
Year: |
2009 |
Journal: |
Infect Immun |
Title: |
Restriction of Legionella pneumophila replication in macrophages requires concerted action of the transcriptional regulators Irf1 and Irf8 and nod-like receptors Naip5 and Nlrc4. |
Volume: |
77 |
Issue: |
11 |
Pages: |
4794-805 |
|
•
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Publication |
First Author: |
Pearl D |
Year: |
2020 |
Journal: |
J Immunol |
Title: |
4E-BP-Dependent Translational Control of Irf8 Mediates Adipose Tissue Macrophage Inflammatory Response. |
Volume: |
204 |
Issue: |
9 |
Pages: |
2392-2400 |
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Publication |
First Author: |
Das A |
Year: |
2021 |
Journal: |
Front Immunol |
Title: |
Mutation in Irf8 Gene (Irf8R294C ) Impairs Type I IFN-Mediated Antiviral Immune Response by Murine pDCs. |
Volume: |
12 |
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Pages: |
758190 |
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Publication |
First Author: |
Zhong X |
Year: |
2019 |
Journal: |
MGI Direct Data Submission |
Title: |
Mutagenetix entry for gemini2. |
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Publication |
First Author: |
Anderson DA |
Year: |
2022 |
Journal: |
J Exp Med |
Title: |
Transition from cMyc to L-Myc during dendritic cell development coordinated by rising levels of IRF8. |
Volume: |
219 |
Issue: |
2 |
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Publication |
First Author: |
Liu TT |
Year: |
2022 |
Journal: |
Nature |
Title: |
Ablation of cDC2 development by triple mutations within the Zeb2 enhancer. |
Volume: |
607 |
Issue: |
7917 |
Pages: |
142-148 |
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Publication |
First Author: |
Miyagawa F |
Year: |
2012 |
Journal: |
Proc Natl Acad Sci U S A |
Title: |
Interferon regulatory factor 8 integrates T-cell receptor and cytokine-signaling pathways and drives effector differentiation of CD8 T cells. |
Volume: |
109 |
Issue: |
30 |
Pages: |
12123-8 |
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Publication |
First Author: |
Kobayakawa K |
Year: |
2019 |
Journal: |
Sci Adv |
Title: |
Macrophage centripetal migration drives spontaneous healing process after spinal cord injury. |
Volume: |
5 |
Issue: |
5 |
Pages: |
eaav5086 |
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Publication |
First Author: |
Cheng J |
Year: |
2017 |
Journal: |
Inflammation |
Title: |
miRNA-451a Targets IFN Regulatory Factor 8 for the Progression of Systemic Lupus Erythematosus. |
Volume: |
40 |
Issue: |
2 |
Pages: |
676-687 |
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Publication |
First Author: |
Humblin E |
Year: |
2017 |
Journal: |
Nat Commun |
Title: |
IRF8-dependent molecular complexes control the Th9 transcriptional program. |
Volume: |
8 |
Issue: |
1 |
Pages: |
2085 |
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Publication |
First Author: |
Netherby CS |
Year: |
2017 |
Journal: |
J Immunol |
Title: |
The Granulocyte Progenitor Stage Is a Key Target of IRF8-Mediated Regulation of Myeloid-Derived Suppressor Cell Production. |
Volume: |
198 |
Issue: |
10 |
Pages: |
4129-4139 |
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Publication |
First Author: |
Zhao B |
Year: |
2009 |
Journal: |
Nat Med |
Title: |
Interferon regulatory factor-8 regulates bone metabolism by suppressing osteoclastogenesis. |
Volume: |
15 |
Issue: |
9 |
Pages: |
1066-71 |
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Publication |
First Author: |
Kurotaki D |
Year: |
2013 |
Journal: |
Blood |
Title: |
Essential role of the IRF8-KLF4 transcription factor cascade in murine monocyte differentiation. |
Volume: |
121 |
Issue: |
10 |
Pages: |
1839-49 |
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Publication |
First Author: |
Xiang M |
Year: |
2014 |
Journal: |
J Neurochem |
Title: |
Interferon regulatory factor 8 protects against cerebral ischaemic-reperfusion injury. |
Volume: |
129 |
Issue: |
6 |
Pages: |
988-1001 |
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Publication |
First Author: |
Minten C |
Year: |
2012 |
Journal: |
PLoS One |
Title: |
IFN regulatory factor 8 is a key constitutive determinant of the morphological and molecular properties of microglia in the CNS. |
Volume: |
7 |
Issue: |
11 |
Pages: |
e49851 |
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Publication |
First Author: |
Zhou JX |
Year: |
2009 |
Journal: |
J Immunol |
Title: |
IFN regulatory factor 8 regulates MDM2 in germinal center B cells. |
Volume: |
183 |
Issue: |
5 |
Pages: |
3188-94 |
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Publication |
First Author: |
Qiu Z |
Year: |
2020 |
Journal: |
Cancer Genet |
Title: |
Generation and characterization of the Eµ-Irf8 mouse model. |
Volume: |
245 |
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Pages: |
6-16 |
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Publication |
First Author: |
Li N |
Year: |
2021 |
Journal: |
Front Immunol |
Title: |
IRF8-Dependent Type I Conventional Dendritic Cells (cDC1s) Control Post-Ischemic Inflammation and Mildly Protect Against Post-Ischemic Acute Kidney Injury and Disease. |
Volume: |
12 |
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Pages: |
685559 |
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Publication |
First Author: |
Saburi M |
Year: |
2021 |
Journal: |
Cells |
Title: |
Maternal High-Fat Diet Promotes Abdominal Aortic Aneurysm Expansion in Adult Offspring by Epigenetic Regulation of IRF8-Mediated Osteoclast-like Macrophage Differentiation. |
Volume: |
10 |
Issue: |
9 |
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Publication |
First Author: |
de Mingo Pulido Á |
Year: |
2018 |
Journal: |
Cancer Cell |
Title: |
TIM-3 Regulates CD103+ Dendritic Cell Function and Response to Chemotherapy in Breast Cancer. |
Volume: |
33 |
Issue: |
1 |
Pages: |
60-74.e6 |
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Publication |
First Author: |
Masuda T |
Year: |
2015 |
Journal: |
J Pharmacol Sci |
Title: |
Transcription factor IRF1 is responsible for IRF8-mediated IL-1β expression in reactive microglia. |
Volume: |
128 |
Issue: |
4 |
Pages: |
216-20 |
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Publication |
First Author: |
Tailor P |
Year: |
2007 |
Journal: |
Immunity |
Title: |
The feedback phase of type I interferon induction in dendritic cells requires interferon regulatory factor 8. |
Volume: |
27 |
Issue: |
2 |
Pages: |
228-39 |
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