Combined targeting of Arf1 and Ras potentiates anticancer activity for prostate cancer therapeutics

Liwei Lang1, Chloe Shay2, Xiangdong Zhao1

  • 1Department of Oral Biology, Augusta University, Augusta, GA, 30912, USA.

Abstract

Insights

Targeting Arf1 with Exo2 and Ras with salirasib inhibits prostate cancer growth. Simultaneous blockade of Arf1 and Ras, key signaling pathways, offers a promising therapeutic strategy for advanced prostate cancer.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Prostate cancer often becomes refractory to standard treatments, necessitating novel therapeutic strategies.
  • Activation of small GTPases, including Ras and Arf1, is implicated in advanced prostate cancer progression.
  • Identifying new molecular targets is crucial for improving patient survival rates.

Purpose of the Study:

  • To investigate the therapeutic potential of targeting Arf1 and Ras signaling pathways in prostate cancer.
  • To evaluate the efficacy of Exo2, an Arf1 inhibitor, and salirasib, a Ras inhibitor, in preclinical models of prostate cancer.

Main Methods:

  • Cell proliferation, migration, invasion, and apoptosis assays were used to assess drug effects in vitro.
  • Western blot and immunohistochemistry were employed to analyze protein activation (e.g., ERK, cleaved PARP, Caspase 3).
  • A xenograft mouse model was utilized to evaluate in vivo drug efficacy and tumor growth inhibition.

Main Results:

  • Exo2 suppressed prostate cancer cell proliferation by inhibiting ERK1/2 activation, and also reduced migration/invasion while inducing apoptosis.
  • Salirasib enhanced Exo2-induced cytotoxicity, partly by further suppressing ERK1/2 phosphorylation.
  • In vivo, Exo2 reduced tumor burden and ERK1/2 activation in a mouse model; combination therapy showed superior tumor growth inhibition.

Conclusions:

  • Simultaneous blockade of Arf1 and Ras activation presents a potential targeted therapeutic strategy for prostate cancer.
  • Combined inhibition of Arf1 and Ras pathways may offer a more effective approach for treating refractory prostate cancers.

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