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Co-immunoprecipitation of the Mouse Mx1 Protein with the Influenza A Virus Nucleoprotein
Published on: April 21, 2015
MAGI1 inhibits interferon signaling to promote influenza A infection
Yin Wang1, Jun-Ichi Abe1, Khanh M Chau2
1Department of Cardiology, The University of Texas MD Anderson Cancer Center, Houston, TX, United States.
Abstract:
We have shown that membrane-associated guanylate kinase with inverted domain structure-1 (MAGI1), a scaffold protein with six PSD95/DiscLarge/ZO-1 (PDZ) domains, is involved in the regulation of endothelial cell (EC) activation and atherogenesis in mice. In addition to causing acute respiratory disease, influenza A virus (IAV) infection plays an important role in atherogenesis and triggers acute coronary syndromes and fatal myocardial infarction. Therefore, the aim of this study is to investigate the function and regulation of MAGI1 in IAV-induced EC activation. Whereas, EC infection by IAV increases MAGI1 expression, MAGI1 depletion suppresses IAV infection, suggesting that the induction of MAGI1 may promote IAV infection. Treatment of ECs with oxidized low-density lipoprotein (OxLDL) increases MAGI1 expression and IAV infection, suggesting that MAGI1 is part of the mechanistic link between serum lipid levels and patient prognosis following IAV infection. Our microarray studies suggest that MAGI1-depleted ECs increase protein expression and signaling networks involve in interferon (IFN) production. Specifically, infection of MAGI1-null ECs with IAV upregulates expression of signal transducer and activator of transcription 1 (STAT1), interferon b1 (IFNb1), myxovirus resistance protein 1 (MX1) and 2'-5'-oligoadenylate synthetase 2 (OAS2), and activate STAT5. By contrast, MAGI1 overexpression inhibits Ifnb1 mRNA and MX1 expression, again supporting the pro-viral response mediated by MAGI1. MAGI1 depletion induces the expression of MX1 and virus suppression. The data suggests that IAV suppression by MAGI1 depletion may, in part, be due to MX1 induction. Lastly, interferon regulatory factor 3 (IRF3) translocates to the nucleus in the absence of IRF3 phosphorylation, and IRF3 SUMOylation is abolished in MAGI1-depleted ECs. The data suggests that MAGI1 inhibits IRF3 activation by maintaining IRF3 SUMOylation. In summary, IAV infection occurs in ECs in a MAGI1 expression-dependent manner by inhibiting anti-viral responses including STATs and IRF3 activation and subsequent MX1 induction, and MAGI1 plays a role in EC activation, and in upregulating a pro-viral response. Therefore, the inhibition of MAGI1 is a potential therapeutic target for IAV-induced cardiovascular disease.
Insights
Influenza A virus (IAV) infection promotes cardiovascular disease by increasing membrane-associated guanylate kinase with inverted domain structure-1 (MAGI1) expression in endothelial cells. Inhibiting MAGI1 enhances anti-viral responses and may be a therapeutic target.
Area of Science:
- Cardiovascular Science
- Virology
- Molecular Biology
Background:
- Influenza A virus (IAV) infection is linked to cardiovascular disease, including atherosclerosis and myocardial infarction.
- Endothelial cell (EC) activation and dysfunction are critical in atherogenesis and IAV pathogenesis.
- Membrane-associated guanylate kinase with inverted domain structure-1 (MAGI1) is a scaffold protein implicated in EC regulation and atherogenesis.
Purpose of the Study:
- To investigate the role and regulation of MAGI1 in IAV-induced EC activation.
- To elucidate the mechanistic link between MAGI1, IAV infection, and cardiovascular disease risk factors like oxidized low-density lipoprotein (OxLDL).
Main Methods:
- Microarray analysis of MAGI1-depleted ECs infected with IAV.
- Assessment of interferon (IFN) production and signaling pathways (STAT1, STAT5, IRF3).
- Evaluation of viral suppression and protein expression (MX1, IFNb1, OAS2) in response to MAGI1 modulation.
Main Results:
- IAV infection increases MAGI1 expression in ECs, while MAGI1 depletion suppresses IAV infection.
- OxLDL treatment enhances MAGI1 expression and IAV infection, linking lipid levels to IAV pathogenesis.
- MAGI1 depletion upregulates antiviral interferon-stimulated genes (STAT1, IFNb1, MX1, OAS2) and activates STAT5.
- MAGI1 overexpression inhibits antiviral gene expression, confirming its pro-viral role.
- MAGI1 depletion enhances virus suppression, partly via MX1 induction.
- MAGI1 inhibits IRF3 activation by maintaining IRF3 SUMOylation, thus suppressing antiviral responses.
Conclusions:
- IAV infection in ECs is dependent on MAGI1 expression, which inhibits antiviral responses (STATs, IRF3) and promotes viral replication.
- MAGI1 plays a significant role in EC activation and exacerbating pro-viral responses during IAV infection.
- Inhibition of MAGI1 represents a potential therapeutic strategy for managing IAV-induced cardiovascular complications.
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