Overexpression of DOC-1R inhibits cell cycle G1/S transition by repressing CDK2 expression and activation

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Abstract

DOC-1R (deleted in oral cancer-1 related) is a novel putative tumor suppressor. This study investigated DOC-1R antitumor activity and the underlying molecular mechanisms. Cell phenotypes were assessed using flow cytometry, BrdU incorporation and CDK2 kinase assays in DOC-1R overexpressing HeLa cells. In addition, RT-PCR and Western blot assays were used to detect underlying molecular changes in these cells. The interaction between DOC-1R and CDK2 proteins was assayed by GST pull-down and immunoprecipitation-Western blot assays. The data showed that DOC-1R overexpression inhibited G1/S phase transition, DNA replication and suppressed CDK2 activity. Molecularly, DOC-1R inhibited CDK2 expression at the mRNA and protein levels, and there were decreased levels of G1-phase cyclins (cyclin D1 and E) and elevated levels of p21, p27, and p53 proteins. Meanwhile, DOC-1R associated with CDK2 and inhibited CDK2 activation by obstructing its association with cyclin E and A. In conclusion, the antitumor effects of DOC-1R may be mediated by negatively regulating G1 phase progression and G1/S transition through inhibiting CDK2 expression and activation. © Ivyspring International Publisher.

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APA

Liu, Q., Liu, X., Gao, J., Shi, X., Hu, X., Wang, S., & Luo, Y. (2013). Overexpression of DOC-1R inhibits cell cycle G1/S transition by repressing CDK2 expression and activation. International Journal of Biological Sciences, 9(6), 541–549. https://doi.org/10.7150/ijbs.5763

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