Related Experiment Videos

Mutational analysis of murine Mx1 protein: GTP binding core domain is essential for anti-influenza A activity

K Melén1, I Julkunen

  • 1Molecular Biology Programme, National Public Health Institute, Helsinki, Finland.

Virology
|November 15, 1994
PubMed

Insights

The murine Mx1 protein inhibits influenza virus by blocking mRNA synthesis. Its GTP binding domain is essential for antiviral activity, though other regions like the nuclear localization signal also play roles.

Area of Science:

  • Virology
  • Molecular Biology
  • Cell Biology

Background:

  • Interferon-induced resistance to influenza virus in murine cells is mediated by the Mx1 protein.
  • The Mx1 protein is a nuclear GTPase with a C-terminal leucine zipper domain involved in oligomerization.

Purpose of the Study:

  • To identify functionally important elements of the murine Mx1 protein.
  • To investigate the role of specific domains and mutations on Mx1's antiviral activity against influenza.

Main Methods:

  • Construction and analysis of substitution, linker insertion, and deletion mutants of murine Mx1 protein.
  • Transient transfection and influenza A infection assay in COS cells using indirect immunofluorescence.
  • GTPase activity assay for wild-type and mutant Mx1 proteins.

Main Results:

  • Mutations in GTP binding elements reduced antiviral activity and GTPase activity significantly.
  • A mutation near the C-terminus disrupted nuclear localization, leading to cytoplasmic localization and reduced antiviral efficacy.
  • The N-terminal half of the Mx1 protein appeared more critical for antiviral activity than other regions.

Conclusions:

  • The GTP binding domain is essential for the anti-influenza activity of Mx1 protein.
  • Other domains, including the leucine zipper and nuclear localization signal, are also important for Mx1 function.
  • Understanding Mx1 protein structure-function relationships is key to developing antiviral strategies.

Related Concept Videos