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Human and mouse Mx proteins inhibit different steps of the influenza virus multiplication cycle

J Pavlovic1, O Haller, P Staeheli

  • 1Institute for Immunology and Virology, University of Zürich, Switzerland.

Journal of Virology
|April 1, 1992
PubMed

Insights

Human MxA and mouse Mx1 proteins inhibit influenza virus replication. Mouse Mx1 blocks viral transcription in the nucleus, while human MxA interferes with a later step in the cytoplasm.

Area of Science:

  • Virology
  • Immunology
  • Molecular Biology

Background:

  • Interferon-induced Mx proteins are key antiviral factors.
  • Human MxA is cytoplasmic; mouse Mx1 is nuclear.
  • Both MxA and Mx1 inhibit influenza A virus replication.

Purpose of the Study:

  • To elucidate the distinct mechanisms by which human MxA and mouse Mx1 inhibit influenza A virus replication.
  • To identify the specific stages of the viral life cycle targeted by MxA and Mx1.

Main Methods:

  • Utilized stably transfected cell lines expressing either human MxA or mouse Mx1.
  • Analyzed viral mRNA synthesis, accumulation, and transport in infected cells.
  • Assessed viral protein synthesis and genome amplification.

Main Results:

  • Human MxA expression allowed normal viral mRNA accumulation but inhibited viral protein synthesis and genome amplification, suggesting a cytoplasmic block.
  • Mouse Mx1 expression significantly reduced viral mRNA concentrations, particularly for polymerase proteins, indicating a nuclear transcriptional block.
  • MxA and Mx1 exhibit distinct mechanisms and cellular localization in inhibiting influenza virus.

Conclusions:

  • Mouse Mx1 protein inhibits influenza virus primary transcription in the nucleus.
  • Human MxA protein interferes with a post-transcriptional step, likely in the cytoplasm.
  • These findings highlight differential antiviral strategies employed by homologous Mx proteins.

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