Loading...
Itaconate and derivatives reduce interferon responses and inflammation in influenza A virus infection.
Sohail, Aaqib ; Iqbal, Azeem A ; Sahini, Nishika ; Chen, Fangfang ; Tantawy, Mohamed ; Waqas, Fakhar ; Winterhoff, Moritz ; ; Schultz, Kristin ; Geffers, Robert ... show 10 more
Sohail, Aaqib
Iqbal, Azeem A
Sahini, Nishika
Chen, Fangfang
Tantawy, Mohamed
Waqas, Fakhar
Winterhoff, Moritz
Schultz, Kristin
Geffers, Robert
Citations
Altmetric:
Advisors
Editors
Other Contributors
Issue Date
2022-01-13
Submitted date
Files
Loading...
Open Access publication
Adobe PDF, 18.87 MB
Other Titles
Abstract
Excessive inflammation is a major cause of morbidity and mortality in many viral infections including influenza. Therefore, there is a need for therapeutic interventions that dampen and redirect inflammatory responses and, ideally, exert antiviral effects. Itaconate is an immunomodulatory metabolite which also reprograms cell metabolism and inflammatory responses when applied exogenously. We evaluated effects of endogenous itaconate and exogenous application of itaconate and its variants dimethyl- and 4-octyl-itaconate (DI, 4OI) on host responses to influenza A virus (IAV). Infection induced expression of ACOD1, the enzyme catalyzing itaconate synthesis, in monocytes and macrophages, which correlated with viral replication and was abrogated by DI and 4OI treatment. In IAV-infected mice, pulmonary inflammation and weight loss were greater in Acod1-/- than in wild-type mice, and DI treatment reduced pulmonary inflammation and mortality. The compounds reversed infection-triggered interferon responses and modulated inflammation in human cells supporting non-productive and productive infection, in peripheral blood mononuclear cells, and in human lung tissue. Itaconates reduced ROS levels and STAT1 phosphorylation, whereas AKT phosphorylation was reduced by 4OI and DI but increased by itaconate. Single-cell RNA sequencing identified monocytes as the main target of infection and the exclusive source of ACOD1 mRNA in peripheral blood. DI treatment silenced IFN-responses predominantly in monocytes, but also in lymphocytes and natural killer cells. Ectopic synthesis of itaconate in A549 cells, which do not physiologically express ACOD1, reduced infection-driven inflammation, and DI reduced IAV- and IFNγ-induced CXCL10 expression in murine macrophages independent of the presence of endogenous ACOD1. The compounds differed greatly in their effects on cellular gene homeostasis and released cytokines/chemokines, but all three markedly reduced release of the pro-inflammatory chemokines CXCL10 (IP-10) and CCL2 (MCP-1). Viral replication did not increase under treatment despite the dramatically repressed IFN responses. In fact, 4OI strongly inhibited viral transcription in peripheral blood mononuclear cells, and the compounds reduced viral titers (4OI>Ita>DI) in A549 cells whereas viral transcription was unaffected. Taken together, these results reveal itaconates as immunomodulatory and antiviral interventions for influenza virus infection.
Citation
PLoS Pathog. 2022 Jan 13;18(1):e1010219. doi: 10.1371/journal.ppat.1010219. Epub ahead of print.
Publisher
Journal
PubMed ID
PubMed Central ID
Additional Links
Embedded video
Type
Article
Language
en
Description
Series/Report no.
ISSN
EISSN
1553-7374
ISBN
ISMN
Gov't Doc #
Sponsors
License
Attribution 4.0 International
Collections
publications of the research group biomarker in infection and
immunity [[TC] BIOM)
publications of the research group genomeanalytics (GMAK)
publications of the research group infection genetics (INFG)
publications of the research group of molecular bacteriology(MOBA)
publications of the research group vaccinology and applied microbiology (VAC)
publications of the service unit animal experimentation: (TEE)
publications of the research group genomeanalytics (GMAK)
publications of the research group infection genetics (INFG)
publications of the research group of molecular bacteriology(MOBA)
publications of the research group vaccinology and applied microbiology (VAC)
publications of the service unit animal experimentation: (TEE)
