4.7 Article

Apoptin mediates mitophagy and endogenous apoptosis by regulating the level of ROS in hepatocellular carcinoma

Journal

CELL COMMUNICATION AND SIGNALING
Volume 20, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12964-022-00940-1

Keywords

Apoptin; Human liver cancer; Apoptosis; Autophagy; ROS

Categories

Funding

  1. Young Scientist Program Training Program of Changchun University of Chinese Medicine [QNKXJ2-2021ZR13]
  2. Science and Technology Research Project of Jilin Provincial Department of Education [JJKH20220873KJ]
  3. Major Science and Technology Project for Major Disease Prevention and Control in Jilin Province [20210303002SF]
  4. Important Biological Pathogen Vaccine Research Project [19SWAQ08]
  5. Jilin Province Youth Scientific and Technological Talent Support Project [QT202111]

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The study found that Apoptin can significantly increase apoptosis and autophagy in liver cancer cells, and induce mitophagy through the increase of NIX protein expression. Apoptin treatment also leads to a significant increase in cellular ROS levels, which are involved in apoptosis and autophagy of liver cancer cells. The increase in ROS levels may be a key factor causing apoptosis and autophagy.
Background: Apoptin, as a tumor-specific pro-apoptotic protein, plays an important anti-tumoral role, but its mechanism of autophagy activation and the interaction between autophagy and apoptosis have not been accurately elucidated. Here, we studied the mechanism of apoptin-induced apoptosis and autophagy and the interaction between two processes. Methods: Using crystal violet staining and the CCK-8 assay, we analyzed the effect of apoptin in the inhibition of liver cancer cells in vitro and analyzed the effect of inhibiting liver cancer in vivo by establishing a nude mouse tumor model. Flow cytometry and fluorescence staining were used to analyze the main types of apoptin-induced apoptosis and autophagy. Subsequently, the relationship between the two events was also analyzed. Flow cytometry was used to analyze the effect of ROS on apoptin-mediated apoptosis and autophagy mediated by apoptin. The effect of ROS on two phenomena was analyzed. Finally, the role of key genes involved in autophagy was analyzed using gene silencing. Results: The results showed that apoptin can significantly increase the apoptosis and autophagy of liver cancer cells, and that apoptin can cause mitophagy through the increase in the expression of NIX protein. Apoptin can also significantly increase the level of cellular ROS, involved in apoptin-mediated autophagy and apoptosis of liver cancer cells. The change of ROS may be a key factor causing apoptosis and autophagy. Conclusion: The above results indicate that the increase in ROS levels after apoptin treatment of liver cancer cells leads to the loss of mitochondrial transmembrane potential, resulting in endogenous apoptosis and mitophagy through the recruitment of NIX. Therefore, ROS may be a key factor connecting endogenous apoptosis and autophagy induced by apoptin in liver cancer cells.

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