20(S)-ginsenoside Rg3 suppresses gastric cancer cell proliferation by inhibiting E2F-DP dimerization

Fuqiang Li1, Chengyu Cai2, Fei Wang2

  • 1School of Life Sciences, Jilin University, 2699 Qianjin Street, Chaoyang District, Changchun, Jilin 130012, China; School of Pharmacy, Changchun University of Chinese Medicine, Boshuo Road, Jingyue Development Zone, Changchun, Jilin 130117, China.

Abstract

Insights

Ginsenoside Rg3 directly binds to E2F, inhibiting gastric cancer cell proliferation by disrupting E2F-DP formation and activating tumor suppressors. This reveals a potential therapeutic strategy targeting tumors with high E2F expression.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Pharmacology

Background:

  • Gastric cancer (GC) is aggressive, with limited treatment options due to drug resistance.
  • Ginsenoside Rg3 shows anti-tumor potential, but its mechanisms in GC are unclear.

Purpose of the Study:

  • Elucidate the molecular mechanisms of ginsenoside Rg3's anti-cancer effects in gastric cancer.
  • Investigate Rg3's interaction with E2F and its downstream effects on cell proliferation and apoptosis.

Main Methods:

  • RNA sequencing (RNA-Seq) to identify Rg3-regulated targets.
  • Assays including CETSA, pull-down, mass spectrometry, and molecular docking to confirm Rg3-E2F interaction.
  • qRT-PCR, Western blotting, and flow cytometry to analyze molecular effects on cell cycle and apoptosis.

Main Results:

  • Rg3 suppresses E2F expression, inducing G1/S cell cycle arrest and inhibiting GC proliferation in vitro and in vivo.
  • Confirmed direct binding of Rg3 to E2F, disrupting E2F-DP heterodimer formation and downstream gene transcription.
  • Rg3 activates p53/p21 and inhibits cyclin/CDK-RB signaling, blocking G1/S transition.

Conclusions:

  • Rg3 directly targets E2F, inhibiting gastric cancer cell proliferation via disruption of E2F-DP and activation of p53/p21.
  • Rg3 suppresses the cyclin/CDK-RB pathway, offering a novel therapeutic strategy for GC.
  • Small molecules similar to Rg3 could target E2F-expressing tumors.

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