Related Experiment Video
Updated: Jun 17, 2025

Utilizing 18F-FDG PET/CT Imaging and Quantitative Histology to Measure Dynamic Changes in the Glucose Metabolism in Mouse Models of Lung Cancer
Published on: July 21, 2018
Glypican-3 deficiency in liver cancer upregulates MAPK/ERK pathway but decreases cell proliferation
Joon-Yong Chung1, Woonghee Lee1, Olivia W Lee2
1Molecular Imaging Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health Bethesda, MD 20892, USA.
Abstract:
Glypican-3 (GPC3) is overexpressed in hepatocellular carcinomas and hepatoblastomas and represents an important therapeutic target but the biologic importance of GPC3 in liver cancer is unclear. To date, there are limited data characterizing the biological implications of GPC3 knockout (KO) in liver cancers that intrinsically express this target. Here, we report on the development and characterization of GPC3-KO liver cancer cell lines and compare to them to parental lines. GPC3-KO variants were established in HepG2 and Hep3B liver cancer cell lines using a lentivirus-mediated CRISPR/Cas9 system. We assessed the effects of GPC3 deficiency on oncogenic properties in vitro and in murine xenograft models. Downstream cellular signaling pathway changes induced by GPC3 deficiency were examined by RNAseq and western blot. To confirm the usefulness of the models for GPC3-targeted drug development, we evaluated the target engagement of a GPC3-selective antibody, GC33, conjugated to the positron-emitting zirconium-89 (89Zr) in subcutaneous murine xenografts of wild type (WT) and KO liver cancer cell lines. Deletion of GPC3 significantly reduced liver cancer cell proliferation, migration, and invasion compared to the parental cell lines. Additionally, the tumor growth of GPC3-KO liver cancer xenografts was significantly slower compared with control xenografts. RNA sequencing analysis also showed GPC3-KO resulted in a reduction in the expression of genes associated with cell cycle regulation, invasion, and migration. Specifically, we observed the downregulation of components in the AKT/NFκB/WNT signaling pathways and of molecules related to cell cycle regulation with GPC3-KO. In contrast, pMAPK/ERK1/2 was upregulated, suggesting an adaptive compensatory response. KO lines demonstrated increased sensitivity to ERK (GDC09994), while AKT (MK2206) inhibition was more effective in WT lines. Using antibody-based positron emission tomography (immunoPET) imaging, we confirmed that 89Zr-GC33 accumulated exclusively in GPC3-expression xenografts but not in GPC3-KO xenografts with high tumor uptake and tumor-to-liver signal ratio. We show that GPC3-KO liver cancer cell lines exhibit decreased tumorigenicity and altered signaling pathways, including upregulated pMAPK/ERK1/2, compared to parental lines. Furthermore, we successfully distinguished between GPC3+ and GPC3- tumors using the GPC3-targeted immunoPET imaging agent, demonstrating the potential utility of these cell lines in facilitating GPC3-selective drug development.
Insights
Glypican-3 (GPC3) knockout in liver cancer cells reduces proliferation and tumor growth. This study developed GPC3-knockout models for evaluating GPC3-targeted therapies and imaging agents.
Area of Science:
- Hepatocellular carcinoma and hepatoblastoma research
- Cancer biology and therapeutic target identification
- Molecular oncology and signaling pathway analysis
Background:
- Glypican-3 (GPC3) is overexpressed in liver cancers, presenting a therapeutic target.
- The biological significance of GPC3 in liver cancer remains incompletely understood.
- Limited data exists on GPC3's role in intrinsically expressing liver cancer cell lines.
Purpose of the Study:
- To develop and characterize Glypican-3 knockout (GPC3-KO) liver cancer cell lines.
- To investigate the biological implications of GPC3 deficiency on cancer cell oncogenic properties.
- To evaluate GPC3-KO models for GPC3-targeted drug development and imaging.
Main Methods:
- Established GPC3-KO HepG2 and Hep3B liver cancer cell lines using CRISPR/Cas9.
- Assessed oncogenic properties (proliferation, migration, invasion) in vitro and in vivo (murine xenografts).
- Analyzed signaling pathways via RNAseq and western blot; evaluated antibody-drug conjugate (89Zr-GC33) targeting using immunoPET imaging.
Main Results:
- GPC3 deletion significantly reduced liver cancer cell proliferation, migration, invasion, and tumor growth in xenografts.
- RNAseq revealed downregulation of cell cycle, invasion, and migration genes, including AKT/NFκB/WNT pathways; pMAPK/ERK1/2 was upregulated.
- 89Zr-GC33 immunoPET imaging successfully distinguished GPC3-expressing tumors from GPC3-KO tumors.
Conclusions:
- GPC3-knockout liver cancer cell lines exhibit decreased tumorigenicity and altered signaling pathways.
- Upregulation of pMAPK/ERK1/2 in GPC3-KO lines suggests an adaptive response.
- Developed GPC3-KO models and immunoPET imaging demonstrate utility for GPC3-targeted drug development.
Related Concept Videos
PI3K/mTOR/AKT Signaling Pathway
Interactions Between Signaling Pathways
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
MAPK Signaling Cascades
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
Abnormal Proliferation
Inhibition of Cdk Activity

