Decursin inhibits EGFR-ERK1/2 signaling axis in advanced human prostate carcinoma cells

Tariq A Bhat1, Arpit Dheeraj1, Dhanya K Nambiar1

  • 1Cancer Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.

The Prostate
|January 4, 2023
PubMed

Insights

Decursin, a coumarin compound, effectively inhibits human prostate cancer cell growth by targeting the epidermal growth factor receptor (EGFR) and ERK1/2 signaling pathway. This mechanism leads to cell cycle arrest and apoptosis, offering a potential new therapy for prostate cancer.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Prostate cancer (PCa) exhibits deregulated epidermal growth factor receptor (EGFR) and ERK1/2 signaling.
  • The molecular mechanisms of decursin's anticancer activity in PCa are not fully understood.

Purpose of the Study:

  • To elucidate the molecular mechanisms underlying decursin's anticancer effects in advanced human prostate carcinoma cells.
  • To investigate decursin's impact on the EGFR-ERK1/2 signaling axis in PCa.

Main Methods:

  • Decursin treatment of DU145 and 22Rv1 prostate cancer cells.
  • Analysis of EGFR and ERK1/2 phosphorylation and protein expression.
  • Cell cycle analysis and apoptosis assays.
  • Assessment of Rb-related proteins and E2F transcription factors.
  • Combination treatment with EGFR inhibitor erlotinib.

Main Results:

  • Decursin inhibited EGFR phosphorylation at Y1068 and subsequent ERK1/2 phosphorylation in PCa cells.
  • Decursin treatment resulted in significant inhibition of cell proliferation, G1 phase arrest, and apoptosis.
  • Decursin modulated Rb-related proteins (p107, p130) and E2F transcription factors.
  • Decursin induced G1 arrest in 22Rv1 cells via p27/Kip1 induction and downregulation of CDK2/CDK4.
  • Combined decursin and erlotinib treatment enhanced decursin's cytotoxic effects.

Conclusions:

  • Decursin's anticancer efficacy in human prostate cancer is mediated by the inhibition of the EGFR-ERK1/2 signaling axis.
  • Targeting this pathway represents a promising therapeutic strategy for advanced prostate cancer.

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