Hepatitis C virus NS5A protein down-regulates the expression of spindle gene Aspm through PKR-p38 signaling pathway

Shun-Chi Wu1, Shin C Chang, Hung-Yi Wu

  • 1Institutes of Biochemistry and Molecular Biology, National Taiwan University College of Medicine, Taipei, Taiwan, Republic of China.

Insights

Hepatitis C virus nonstructural protein 5A (NS5A) down-regulates ASPM, a mitotic spindle protein, leading to cell cycle arrest and chromosome instability. This mechanism contributes to hepatocellular carcinoma development.

Area of Science:

  • Hepatology
  • Molecular Biology
  • Oncology

Background:

  • Hepatitis C virus (HCV) infection is a major cause of persistent liver disease and hepatocellular carcinoma.
  • Viral nonstructural protein 5A (NS5A) is implicated in chromosome aneuploidy, but its precise molecular mechanisms remain unclear.

Purpose of the Study:

  • To elucidate the molecular mechanisms by which HCV NS5A induces chromosome instability and contributes to hepatocellular carcinoma.

Main Methods:

  • Hydrodynamics-based in vivo transfection in a mouse model.
  • Laser capture microdissection of NS5A-expressing hepatocytes.
  • Gene expression profiling using microarray analysis.
  • Real-time PCR and Western blot for Aspm validation.
  • In vitro cell culture systems with NS5A expression and mutagenesis.

Main Results:

  • HCV NS5A down-regulates the expression of Aspm (abnormal spindle-like, microcephaly associated), which encodes the mitotic spindle protein ASPM.
  • NS5A expression induced G(2)/M cell cycle block and chromosome aneuploidy in cultured cells.
  • ASPM overexpression rescued the G(2)/M cell cycle block.
  • NS5A repressed Aspm promoter activity via the PKR-p38 signaling pathway, dependent on NS5A-PKR interaction.

Conclusions:

  • HCV NS5A protein down-regulates ASPM expression, disrupting mitotic cell cycle regulation.
  • This disruption leads to chromosome instability and is a potential mechanism driving hepatocellular carcinoma development.

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