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.

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.

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