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Updated: Aug 14, 2026

Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
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.
Abstract:
The genome of severe acute respiratory syndrome-associated coronavirus (SARS-CoV) contains four structural genes that are homologous to genes found in other coronaviruses, and also contains six subgroup-specific open reading frames (ORFs). Expression of one of these subgroup-specific genes, ORF7a, resulted in apoptosis via a caspase-dependent pathway. Here, we observed that transient expression of ORF7a protein fused with myc or GFP tags at its N or C terminus inhibited cell growth and prevented BrdU incorporation in different cultural cells, suggesting that ORF7a expression may regulate cell cycle progression. Analysis by flow cytometry demonstrated that ORF7a expression was associated with blockage of cell cycle progression at G0/G1 phase in HEK 293 cells after 24 to 60 h post-transfection. Similar results were observed in COS-7 and Vero cells. Mutation analysis of ORF7a revealed that the domain spanning aa 44-82 of 7a protein was essential for its cytoplasmic localization and for induction of the cell cycle arrest. After analyzing the cellular proteins involving in regulation of cell cycle progression, we demonstrated that ORF7a expression was correlated with a significant reduction of cyclin D3 level of mRNA transcription and expression, and phosphorylation of retinoblastoma (Rb) protein at ser795 and ser809/811, not with the expression of cyclin D1, D2, cdk4 and cdk6 in HEK 293 cells. These results suggest that the insufficient expression of cyclin D3 may cause a decreased activity of cyclin D/cdk4/6, resulting in the inhibition of Rb phosphorylation. Accumulation of hypo- or non-phosphorylated pRb thus prevents cell cycle progression at G0/G1 phase.
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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