Pokemon reduces Bcl-2 expression through NF-κ Bp65:a possible mechanism of hepatocellular carcinoma

来源 :Asian Pacific Journal of Tropical Medicine | 被引量 : 0次 | 上传用户:shening
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Objective:To investigate the relationship among Pokemon,NF-κB p65 and Bcl-2 in hepatoma cells.Methods:HCC cell HepG2,SMMC7721 and human fetal liver cell line L02 cells were used,and expression of Pokemon,NF-κB p65 and Bcl-2 in three cells were detected by realtime PCR and western blot.Then siRNA of Pokemon was applied to inhibit the expression of Pokemon and NF-κB p65 and apoptotic rate was determined by flow cytometric analysis. Results:Expressions of Pokemon,NF-κB p65 and Bcl-2 in human hepatoma cell HepG2, SMMC7721 expression were significantly higher than those in human embryonic stem cells L02. siRNA of Pokemon inhibited the expression of Pokemon,NF-κB p65 and Bcl-2 in liver cancer cells,and significantly increased apoptosis of liver cells.While siRNA of NF-κB n65 inhibited the expression of NF-κB p65 and Bcl-2,but Pokemon expression in hepatoma cells had no significant change.Conclusions:The proto-oncogene Pokemon can inhibit PI4ARF by specific transcription regulation of cell cycle and can induce tumors.In addition,Pokemon can regulate NF-κB p65 through the expression of apoptosis repressor,and promote the development of liver cancer.It suggests signal network in the liver include the regulation of new non-classical NF-κB regulatory pathway. Objective: To investigate the relationship among Pokemon, NF-κB p65 and Bcl-2 in hepatoma cells. Methods: HCC cell HepG2, SMMC7721 and human fetal liver cell line L02 cells were used, and expression of Pokemon, NF-κB p65 and Bcl -2 in three cells were detected by real time PCR and western blot. Chen siRNA of Pokemon was applied to inhibit the expression of Pokemon and NF-κB p65 and apoptotic rate was determined by flow cytometric analysis. Results: Expressions of Pokemon, NF-κB p65 and Bcl-2 in human hepatoma cell HepG2, SMMC7721 expression were significantly higher than those in human embryonic stem cells L02. siRNA of Pokemon inhibited the expression of Pokemon, NF-κB p65 and Bcl-2 in liver cancer cells, and increased increased apoptosis of liver cells. Whilst siRNA of NF-κB n65 inhibited the expression of NF-κB p65 and Bcl-2, but Pokemon expression in hepatoma cells had no significant change. Conclusions: The proto-oncogene Pokemon can inhibit PI4ARF by specific transcription regulation of Cell cycle and can induce tumors. In addition, Pokemon can regulate NF-κB p65 through the expression of apoptosis repressor, and promote the development of liver cancer. It suggests signal network in the liver include the regulation of new non-classical NF-κB regulatory pathway.
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