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Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
pRb-expressing adenovirus Ad5-Rb attenuates the p53-induced apoptosis in cervical cancer cell lines
1Department of Obstetrics and Gynecology, Faculty of Medicine, The University of Hong Kong, Hong Kong, China.
Abstract:
The retinoblastoma protein (pRb), the gene product of the first reported tumour suppressor gene, is functionally inactivated by the E7 protein of high-risk human papillomavirus (HPV) found in most human cervical cancers. We have, in this study, constructed an adenoviral vector expressing wild-type pRb (Ad5-Rb) and used the constructed Ad5-Rb to transfect the osteosarcoma cell line Saos-2, and three cervical cancer cell lines HeLa, SiHa and C-33A. Our results showed that pRb caused G1 arrest in Saos-2 cells after transfection with Ad5-Rb. The number of colonies formed by the Ad5-Rb-transfected Saos-2 cells in soft agar was also found to be significantly lower (P<0.05) than those transfected with the adenoviral control expressing Escherichia coli beta-galactosidase (Ad5-LacZ). The transfection of Ad5-Rb caused an increase in the population of SiHa and C-33A cells in the G1 phase from 53.0 and 52.9% to 72.4 and 64.3%, respectively, but not in the HeLa cells. However, Ad5-Rb did not show any inhibitory effect on the growth of SiHa, HeLa and C-33A cells, and inhibition of colony formation in soft agar was not observed either. In contrast, flow cytometric analysis showed that Ad5-p53, a p53-expressing adenovirus, induced apoptosis, i.e. the appearance of sub-G1 peak, in all three tested cervical cancer cell lines. Nevertheless, the Ad5-p53-induced apoptosis was partially inhibited when Ad5-Rb was added simultaneously. These findings suggested that pRb may not be a good candidate for cervical cancer gene therapy. Our data also showed that the use of full-length pRb in combination with TP53 might not be a suitable strategy for cancer gene therapy.
Insights
Retinoblastoma protein (pRb) gene therapy showed limited success in cervical cancer cells. While pRb induced cell cycle arrest in some cancer cells, it did not inhibit growth or colony formation, suggesting it may not be ideal for cervical cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- High-risk human papillomavirus (HPV) E7 protein inactivates the retinoblastoma protein (pRb), a tumor suppressor.
- Cervical cancer is often associated with HPV infection and pRb inactivation.
Purpose of the Study:
- To evaluate the efficacy of adenoviral-mediated wild-type pRb gene therapy in cervical cancer cell lines.
- To assess the impact of pRb on cell cycle progression, growth, and colony formation in cancer cells.
Main Methods:
- Adenoviral vectors expressing wild-type pRb (Ad5-Rb) and Escherichia coli beta-galactosidase (Ad5-LacZ) were constructed.
- Osteosarcoma (Saos-2) and cervical cancer cell lines (HeLa, SiHa, C-33A) were transfected with Ad5-Rb.
- Cell cycle analysis, colony formation assays, and apoptosis detection (using Ad5-p53) were performed.
Main Results:
- Ad5-Rb induced G1 cell cycle arrest in Saos-2, SiHa, and C-33A cells.
- pRb transfection significantly reduced colony formation in Saos-2 cells but not in cervical cancer lines.
- Ad5-Rb did not inhibit the growth of SiHa, HeLa, or C-33A cells.
- Ad5-p53 induced apoptosis in cervical cancer cells, an effect partially inhibited by co-transfection with Ad5-Rb.
Conclusions:
- Wild-type pRb may not be an effective therapeutic candidate for cervical cancer gene therapy.
- Combining pRb with TP53 (p53) might not be a suitable strategy for cancer gene therapy due to partial inhibition of p53-induced apoptosis.
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