Integrin Alpha E (CD103) Limits Virus-Induced IFN-I Production in Conventional Dendritic Cells.
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BORIS DOI
Date of Publication
2021
Publication Type
Article
Division/Institute
Contributor
Duhan, Vikas | |
Khairnar, Vishal | |
Kitanovski, Simo | |
Hamdan, Thamer A | |
Klein, Andrés D | |
Lang, Judith | |
Ali, Murtaza | |
Adomati, Tom | |
Bhat, Hilal | |
Friedrich, Sarah-Kim | |
Li, Fanghui | |
Futerman, Anthony H | |
Addo, Marylyn M | |
Hardt, Cornelia | |
Hoffmann, Daniel | |
Lang, Philipp A | |
Lang, Karl S |
Subject(s)
Series
Frontiers in immunology
ISSN or ISBN (if monograph)
1664-3224
Publisher
Frontiers Research Foundation
Language
English
Publisher DOI
PubMed ID
33584680
Uncontrolled Keywords
Description
Early and strong production of IFN-I by dendritic cells is important to control vesicular stomatitis virus (VSV), however mechanisms which explain this cell-type specific innate immune activation remain to be defined. Here, using a genome wide association study (GWAS), we identified Integrin alpha-E (Itgae, CD103) as a new regulator of antiviral IFN-I production in a mouse model of vesicular stomatitis virus (VSV) infection. CD103 was specifically expressed by splenic conventional dendritic cells (cDCs) and limited IFN-I production in these cells during VSV infection. Mechanistically, CD103 suppressed AKT phosphorylation and mTOR activation in DCs. Deficiency in CD103 accelerated early IFN-I in cDCs and prevented death in VSV infected animals. In conclusion, CD103 participates in regulation of cDC specific IFN-I induction and thereby influences immune activation after VSV infection.
File(s)
| File | File Type | Format | Size | License | Publisher/Copright statement | Content | |
|---|---|---|---|---|---|---|---|
| fimmu-11-607889.pdf | Adobe PDF | 2.1 MB | Attribution (CC BY 4.0) | published |