SARS coronavirus 7a protein blocks cell cycle progression at G0/G1 phase via the cyclin D3/pRb pathway

Xiaoling Yuan1, Jie Wu, Yajun Shan

  • 1Department of Pathophysiology, Beijing Institute of Radiation Medicine, No. 27 Taiping Road, Beijing 100850, China.

Virology
|November 24, 2005
PubMed

Insights

Severe acute respiratory syndrome-associated coronavirus (SARS-CoV) ORF7a protein inhibits cell growth by blocking cell cycle progression at G0/G1 phase. This occurs through reduced cyclin D3 expression and retinoblastoma protein phosphorylation.

Area of Science:

  • Virology
  • Molecular Biology
  • Cell Biology

Background:

  • Severe acute respiratory syndrome-associated coronavirus (SARS-CoV) possesses unique open reading frames (ORFs) beyond its structural genes.
  • Expression of the SARS-CoV ORF7a has been previously linked to apoptosis via a caspase-dependent pathway.

Purpose of the Study:

  • To investigate the role of SARS-CoV ORF7a in cell cycle regulation.
  • To identify the mechanisms by which ORF7a influences cell proliferation.

Main Methods:

  • Transient expression of tagged ORF7a protein in HEK 293, COS-7, and Vero cells.
  • Flow cytometry analysis to assess cell cycle progression.
  • Mutation analysis of ORF7a to determine functional domains.
  • Analysis of cell cycle regulatory proteins, including cyclins and retinoblastoma (Rb) protein.

Main Results:

  • ORF7a expression inhibited cell growth and BrdU incorporation, indicating cell cycle arrest.
  • Cell cycle arrest was predominantly observed at the G0/G1 phase.
  • A specific domain (aa 44-82) of ORF7a was crucial for cytoplasmic localization and cell cycle arrest induction.
  • ORF7a expression correlated with reduced cyclin D3 mRNA and protein levels and decreased Rb phosphorylation.
  • Cyclin D1, D2, cdk4, and cdk6 expression levels were not affected.

Conclusions:

  • SARS-CoV ORF7a plays a significant role in inhibiting host cell cycle progression.
  • The mechanism involves the downregulation of cyclin D3, leading to reduced cyclin D/cdk4/6 activity and impaired Rb phosphorylation.
  • This ultimately results in G0/G1 phase cell cycle arrest, contributing to viral pathogenesis.

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