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Published on: October 11, 2013
VP24 matrix proteins of eight filoviruses downregulate innate immune response by inhibiting the interferon-induced
Hira Khan1, Lav Tripathi1, Pekka Kolehmainen1
1Institute of Biomedicine, University of Turku, Kiinamyllynkatu 10, 20520 Turku, Finland.
Abstract:
Filoviruses encode viral protein 24 (VP24) which effectively inhibit the innate immune responses in infected cells. Here we systematically analysed the effects of nine mammalian filovirus VP24 proteins on interferon (IFN)-induced immune response. We transiently expressed Ebola, Bombali, Bundibugyo, Reston, Sudan and Taï Forest ebolavirus (EBOV, BOMV, BDBV, RESTV, SUDV, TAFV, respectively), Lloviu virus (LLOV), Mengla dianlovirus (MLAV) and Marburgvirus (MARV) VP24 proteins and analysed their ability to inhibit IFN-α-induced activation of myxovirus resistance protein 1 (MxA) and interferon-induced transmembrane protein 3 (IFITM3) promoters. In addition, we analysed the expression of endogenous MxA protein in filovirus VP24-expressing cells. Eight filovirus VP24 proteins, including the VP24s of the recently discovered MLAV, BOMV and LLOV, inhibited IFN-induced MxA and IFITM3 promoter activation. MARV VP24 was the only protein with no inhibitory effect on the activation of either promoter. Endogenous MxA protein expression was impaired in cells transiently expressing VP24s with the exception of MARV VP24. We mutated nuclear localization signal (NLS) of two highly pathogenic filoviruses (EBOV and SUDV) and two putatively non-pathogenic filoviruses (BOMV and RESTV), and showed that the inhibitory effect on IFN-induced expression of MxA was dependent on functional cluster 3 of VP24 nuclear localization signal. Our findings suggest that filovirus VP24 proteins are both genetically and functionally conserved, and that VP24 proteins of most filovirus species are capable of inhibiting IFN-induced antiviral gene expression thereby efficiently downregulating the host innate immune responses.
Insights
Filovirus VP24 proteins are key inhibitors of the innate immune response. Most filovirus VP24s block interferon-induced antiviral gene expression, with exceptions like Marburgvirus VP24, highlighting conserved immune evasion strategies.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Filoviruses possess a viral protein 24 (VP24) that suppresses host innate immune responses.
- Understanding the conserved functions of VP24 across different filovirus species is crucial for antiviral research.
Purpose of the Study:
- To systematically analyze the inhibitory effects of nine mammalian filovirus VP24 proteins on interferon (IFN)-induced immune responses.
- To investigate the role of the nuclear localization signal (NLS) in VP24's immune evasion function.
Main Methods:
- Transient expression of VP24 proteins from various filoviruses (Ebola, Bombali, Bundibugyo, Reston, Sudan, Taï Forest, Lloviu, Mengla, and Marburg).
- Assay of IFN-α-induced promoter activation for myxovirus resistance protein 1 (MxA) and interferon-induced transmembrane protein 3 (IFITM3).
- Analysis of endogenous MxA protein expression and mutation of VP24's NLS.
Main Results:
- Eight out of nine filovirus VP24 proteins inhibited IFN-induced MxA and IFITM3 promoter activation.
- Marburgvirus VP24 was the only protein lacking inhibitory activity.
- Inhibition of IFN-induced MxA expression was dependent on a functional cluster 3 within the VP24 NLS.
Conclusions:
- Filovirus VP24 proteins are genetically and functionally conserved in their ability to inhibit innate immune responses.
- Most filovirus VP24 proteins effectively downregulate host antiviral gene expression via NLS-dependent mechanisms.
- VP24's conserved immune evasion function across filoviruses presents potential therapeutic targets.
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