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.

PubMed

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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