Small molecule screening reveals a transcription-independent pro-survival function of androgen receptor in

Natalia V Narizhneva1, Natalia D Tararova, Petro Ryabokon

  • 1Anti-Cancer Drug Discovery Department, Cleveland BioLabs, Inc, Buffalo, NY, USA.

Insights

Researchers identified novel compounds that kill prostate cancer (PCa) cells by targeting a transcription-independent function of the androgen receptor (AR). This discovery offers new therapeutic strategies for treatment-resistant PCa.

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Discovery

Background:

  • Prostate cancer (PCa) often relapses after androgen deprivation therapy (ADT) due to treatment-resistant, androgen-independent PCa.
  • This resistance is linked to androgen receptor (AR) mutations, allowing AR to function without a ligand, indicating continued AR dependence.

Purpose of the Study:

  • To identify small molecules that inhibit AR transactivation through novel mechanisms, distinct from ligand binding.
  • To explore new therapeutic targets for androgen-independent PCa.

Main Methods:

  • A cell-based assay was used to screen for small molecules inhibiting AR transactivation.
  • Compounds were tested for their effects on PCa cell growth and viability.
  • siRNA and dominant-negative AR mutants were employed to elucidate AR functions.

Main Results:

  • Several identified inhibitors were toxic to AR-expressing PCa cells.
  • Some compounds (ARTIS) suppressed cell growth, while others (ARTIK) induced cell death and AR protein degradation.
  • ARTIK compounds mimicked siRNA-mediated AR knockdown, suggesting a transcription-independent AR function crucial for cell viability.

Conclusions:

  • A transcription-independent function of AR is essential for prostate cancer cell viability.
  • This non-transcriptional AR function represents a promising therapeutic target for anti-PCa treatment.
  • Identified AR inhibitors show in vivo efficacy and are candidates for further pharmacologic development.