AI Article Synopsis

  • The JTB gene is upregulated in liver cancer but usually shows reduced expression in other cancers; this study investigates its role in hepatocellular carcinoma (HCC) and its interaction with the Hepatitis B surface antigen (HBsAg).
  • Experimental methods included creating a HepG2 cell line that expresses HBsAg and silencing JTB using RNA interference to study their effects on cell behavior.
  • The results revealed that silencing JTB increased cancer cell motility and survival, particularly in HBsAg-positive cells, suggesting JTB acts as a tumor suppressor in HBV-related HCC, and targeting it might be a viable treatment strategy.

Article Abstract

Background And Aims: The expression of the jumping translocation breakpoint (JTB) gene is upregulated in malignant liver tissues; however, JTB is associated with unbalanced translocations in many other types of cancer that suppress JTB expression. No comprehensive analysis on its function in human hepatocellular carcinoma (HCC) has been performed to date. We aimed to define the biological consequences for interaction between JTB and HBsAg in HCC cell lines.

Methods: We employed the stable transfection to establish small HBsAg expressing HepG2 cell line, and stably silenced the JTB expression using short hairpin RNA in HepG2 cell line. The effects of JTB and small HBsAg in vitro were determined by assessing cell apoptosis and motility.

Results: Silencing of JTB expression promoted cancer cell motility and reduced cell apoptosis, which was significantly enhanced by HBs expression. Expression of HBsAg inhibited the translocation of JTB to the mitochondria. Furthermore, silencing of the JTB resulted in an increase in the phosphorylation of p65 in HepG2 cells and HepG2-HBs cells, whereas HBsAg expression decreased the phosphorylation of p65. The silencing of JTB in HepG2-HBs cells conferred increased advantages in cell motility and anti-apoptosis.

Conclusion: HBsAg inhibited the translocation of JTB to the mitochondria and decreased the phosphorylation of p65 through the interaction with JTB, After JTB knockdown, HBsAg exhibited a stronger potential to promote tumor progression. Our data suggested that JTB act as a tumor suppressor gene in regards to HBV infection and its activation might be applied as a therapeutic strategy for in control of HBV related HCC development.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3352868PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0036914PLOS

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