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Co-immunoprecipitation of the Mouse Mx1 Protein with the Influenza A Virus Nucleoprotein
Published on: April 21, 2015
Subcellular Localization of MxB Determines Its Antiviral Potential against Influenza A Virus
Fiona Steiner1, Jovan Pavlovic2
1Institute of Medical Virology, University of Zurich, Zürich, Switzerland.
Abstract:
Mx proteins are interferon (IFN) type I (α/β)- and type III (λ)-induced effector proteins with intrinsic antiviral activity. Mammalian Mx proteins show different subcellular localizations and distinct yet partially overlapping viral specificities. However, the precise mechanism(s) of antiviral action are still unresolved. Human MxA accumulates in the cytoplasm and inhibits a wide variety of RNA and DNA viruses, among them influenza A virus (IAV). In contrast, MxB, the second human Mx protein, localizes via its amino (N) terminus to the outer nuclear membrane at or near nuclear pores and inhibits the nuclear import of incoming human immunodeficiency viruses (HIV) and herpesviruses, but not that of IAV. Here, we evaluated whether the antiviral specificity of MxB is determined by its subcellular localization. For this purpose, we redirected MxB to the nucleus or cytoplasm by either attaching a nuclear localization signal to its N terminus or by exchanging the N terminus of MxB with that of MxA. Interestingly, ectopic expression of these MxB variants in the nucleus or in the cytoplasm rendered the host cells resistant to IAV, revealing that the capacity of MxB to block IAV replication critically depends on the site where the protein accumulates in the infected cell. Furthermore, coimmunoprecipitation (co-IP) assays demonstrated that MxB physically interacted with the nucleoprotein (NP) of IAV. Taken together, the data indicate that the subcellular localization of the MxB protein plays a pivotal role in determining its antiviral specificity.IMPORTANCE The interferon system plays a pivotal role in the defense against viral infections. The dynamin-related Mx proteins form a small family of interferon-induced effector proteins with distinct antiviral specificities and subcellular localizations. So far, it is not clear whether the different virus specificities of Mx proteins are the result of distinct mechanisms of action or are due rather to their different subcellular localization. We show here that the human MxB protein, normally localized to the outer membrane of the cell nucleus, acquires antiviral activity against IAV when redirected to the nucleus or cytoplasm, subcellular sites where other members of the Mx protein family efficiently interfere with IAV replication. Our findings thus strongly suggest that Mx proteins act primarily through a common mechanism and that their viral specificity is at least in part determined by their individual subcellular localization.
Insights
Human MxB protein gains antiviral activity against influenza A virus when relocated to the nucleus or cytoplasm. This shows that Mx protein specificity is determined by its cellular location, not just its intrinsic function.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Mx proteins are interferon-induced antiviral effectors with varied localization and viral targets.
- Human MxA inhibits diverse viruses in the cytoplasm, while MxB targets nuclear import of HIV and herpesviruses at the nuclear membrane.
Purpose of the Study:
- To investigate if MxB's antiviral specificity is dictated by its subcellular localization.
- To determine the role of MxB's cellular site in its ability to inhibit influenza A virus (IAV).
Main Methods:
- Redirecting MxB to the nucleus or cytoplasm using N-terminal modifications or MxA N-terminus exchange.
- Assessing IAV resistance in cells expressing MxB variants.
- Performing co-immunoprecipitation (co-IP) to detect MxB-IAV nucleoprotein (NP) interactions.
Main Results:
- Ectopic expression of MxB variants in the nucleus or cytoplasm conferred resistance to IAV.
- IAV inhibition by MxB was dependent on its accumulation site within the cell.
- MxB was shown to physically interact with the IAV nucleoprotein (NP).
Conclusions:
- MxB's antiviral activity against IAV is critically dependent on its subcellular localization.
- Mx proteins may share common antiviral mechanisms, with specificity largely determined by localization.
- Subcellular localization is a key factor in defining the distinct antiviral specificities of mammalian Mx proteins.
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