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Reprogramming induced by isoliquiritigenin diminishes melanoma cachexia through mTORC2-AKT-GSK3β signaling

Xiao-Yu Chen1, De-Fang Li2, Ji-Chun Han2

  • 1College of Chemistry & Pharmacy, Northwest A&F University, Yangling, Shaanxi, 712100, China.

Oncotarget
|April 15, 2017
PubMed

Insights

Isoliquiritigenin (ISL) reprograms human melanoma cells, inhibiting proliferation and promoting differentiation by affecting glucose metabolism and activating the mTORC2-AKT-GSK3β pathway. This suggests ISL

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Flavonoids, including Isoliquiritigenin (ISL), exhibit known anti-tumor properties.
  • The impact of ISL on cancer cell reprogramming remains largely unexplored.
  • Melanoma is a significant form of skin cancer with diverse cellular behaviors.

Purpose of the Study:

  • To investigate the effect of Isoliquiritigenin (ISL) on the reprogramming of human melanoma A375 cells.
  • To elucidate the molecular mechanisms underlying ISL-induced cellular changes in melanoma.
  • To assess the potential of ISL as a therapeutic agent for melanoma.

Main Methods:

  • Treatment of human melanoma A375 cells with ISL (15 μg/ml) for 24 hours.
  • Analysis of cell proliferation, cell cycle, apoptosis, and terminal differentiation markers.
  • Measurement of glucose uptake, lactate production, oxygen consumption rate (OCR), and ATP levels.
  • Western blot analysis to assess the mTORC2-AKT-GSK3β signaling pathway.
  • Co-treatment experiments with ISL and an mTOR inhibitor (Ku-0063794).

Main Results:

  • ISL significantly inhibited A375 cell proliferation and induced G2/M cell cycle arrest without affecting apoptosis.
  • ISL upregulated terminal differentiation indicators, including melanin content and tyrosinase activity.
  • ISL decreased glucose uptake and lactate production, increasing oxygen consumption and causing ATP deficiency.
  • ISL treatment led to decreased protein expression of mTORC2-AKT-GSK3β pathway components.
  • Combined ISL and mTOR inhibitor treatment showed synergistic effects on proliferation inhibition and differentiation induction.

Conclusions:

  • Isoliquiritigenin (ISL) induces reprogramming in human melanoma A375 cells.
  • ISL promotes differentiation and inhibits proliferation, potentially by modulating cellular metabolism and the mTORC2-AKT-GSK3β pathway.
  • ISL demonstrates potential as a therapeutic agent for melanoma, warranting further investigation.

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