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Multiple anticancer effects of blocking MEK-ERK signaling in hepatocellular carcinoma
Chad A Wiesenauer1, Michele T Yip-Schneider, Yufang Wang
1Department of Surgery, Indianapolis, IN 46202, USA.
Background:
Human hepatocellular carcinoma (HCC) is associated with increased expression and activity of mitogen-activated protein kinase (MAPK) signaling intermediates (ie, MEK, ERK).
Study Design:
We determined the effects of MEK-ERK signaling on proliferation, cell cycle, apoptosis, and tumorigenicity of HCC in vitro. HCC cell lines were treated with MEK enzyme-specific inhibitors, PD098059 and U0126, and ERK1,2 oligonucleotide antisense.
Results:
In the HCC cells examined, MEK inhibitors blocked ERK1,2 phosphorylation without a change in total ERK expression. ERK1,2 oligonucleotide antisense inhibited ERK1,2 protein expression. PD098059, U0126, and ERK1,2 oligonucleotide antisense each inhibited HCC cellular proliferation in a concentration-dependent manner. Cell cycle, apoptosis, and tumorigenicity were examined in Hep3B and HepG2 cell lines. MEK enzyme inhibition resulted in anticancer effects through cell cycle arrest, increased apoptosis, and decreased tumorigenicity in these cell lines. U0126 exhibited more potent inhibition of ERK1,2 phosphorylation and had more pronounced anticancer effects in both cell lines. Correspondingly, HepG2 cells, the cell line more sensitive to ERK1,2 phosphorylation inhibition, sustained more pronounced anticancer effects with treatment. But Hep3B cells were more sensitive to ERK1,2 antisense-mediated decreases in ERK1,2 protein expression and correspondingly, their growth was inhibited to a greater degree than the HepG2 cells. MEK enzyme inhibition had downstream effects on the expression of the antiapoptotic protein survivin in both cell lines.
Conclusions:
These data suggest that there are multiple anticancer effects of blocking MEK-ERK signaling, and that these depend on both the susceptibility of the cells and the ability of the treatment to effect a selective block of MEK-ERK signaling in HCC cells.
Insights
Blocking MEK-ERK signaling inhibits hepatocellular carcinoma (HCC) cell growth by reducing proliferation, arresting the cell cycle, and increasing apoptosis. Treatment effectiveness varies based on cell susceptibility and targeted signaling pathway inhibition.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Human hepatocellular carcinoma (HCC) exhibits elevated mitogen-activated protein kinase (MAPK) pathway signaling, involving MEK and ERK intermediates.
- Understanding the role of MEK-ERK signaling is crucial for developing targeted therapies for HCC.
Purpose of the Study:
- To investigate the impact of inhibiting MEK-ERK signaling on HCC cell proliferation, cell cycle, apoptosis, and tumorigenicity in vitro.
- To evaluate the efficacy of MEK inhibitors (PD098059, U0126) and ERK1,2 antisense oligonucleotides in HCC models.
Main Methods:
- Treatment of HCC cell lines with MEK enzyme-specific inhibitors (PD098059, U0126) and ERK1,2 antisense oligonucleotides.
- Assessment of cellular proliferation, cell cycle distribution, apoptosis rates, and tumorigenicity.
- Analysis of ERK1,2 phosphorylation and protein expression, and downstream effects on survivin.
Main Results:
- MEK inhibitors and ERK1,2 antisense significantly inhibited HCC cell proliferation in a dose-dependent manner.
- MEK inhibition induced cell cycle arrest, increased apoptosis, and reduced tumorigenicity in Hep3B and HepG2 cells.
- U0126 demonstrated more potent ERK1,2 inhibition and anticancer effects; cell-specific responses to MEK inhibition and ERK antisense were observed, impacting survivin expression.
Conclusions:
- Blocking MEK-ERK signaling exerts multiple anticancer effects in HCC.
- Therapeutic outcomes are contingent upon cellular susceptibility and the specificity of the MEK-ERK signaling blockade.
- Targeting MEK-ERK signaling represents a promising strategy for HCC treatment.
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