A double-negative prostate cancer subtype is vulnerable to SWI/SNF-targeting degrader molecules

Phillip Thienger1, Irene Paassen1, Xiaosai Yao2,3

  • 1Department for Biomedical Research, University of Bern, Bern, 3008, Switzerland.

Insights

Proteolysis targeting chimera (PROTAC) therapies degrading SWI/SNF ATPases show promise for treating castration-resistant prostate cancer (CRPC). These agents are effective against both AR-dependent and WNT-signaling CRPC, offering new therapeutic avenues.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Therapeutics

Background:

  • Proteolysis targeting chimera (PROTAC) therapies offer a novel strategy to target androgen receptor (AR) signaling in AR-dependent castration-resistant prostate cancer (CRPC-AR).
  • The efficacy of SWI/SNF ATPase-targeting agents in AR-negative CRPC, particularly the WNT-signaling dependent subtype (CRPC-WNT), remains largely unexplored.
  • CRPC-WNT accounts for a significant proportion of CRPC deaths globally.

Purpose of the Study:

  • To investigate the therapeutic potential of SWI/SNF-targeting agents in AR-negative CRPC, specifically the CRPC-WNT subgroup.
  • To elucidate the molecular mechanisms by which SWI/SNF targeting impacts CRPC-WNT cell viability.
  • To identify potential therapeutic targets within the CRPC-WNT signaling pathway.

Main Methods:

  • Utilized cell lines and organoid models derived from CRPC.
  • Administered SWI/SNF-targeting PROTACs to evaluate their impact on cell viability.
  • Investigated the interaction between SWI/SNF ATPase SMARCA4, TCF7L2, and the MAPK signaling pathway in CRPC-WNT.

Main Results:

  • SWI/SNF-targeting PROTAC treatment reduced the viability of both CRPC-AR and CRPC-WNT models.
  • SMARCA4 depletion in CRPC-WNT models was found to interfere with the transcriptional regulator TCF7L2.
  • TCF7L2 was identified as a key driver of proliferation in CRPC-WNT, functioning through the MAPK signaling axis.

Conclusions:

  • SWI/SNF-targeting therapies demonstrate efficacy against both AR-dependent and AR-negative WNT-signaling CRPC.
  • SMARCA4 depletion disrupts TCF7L2-mediated proliferation in CRPC-WNT by affecting the MAPK pathway.
  • Targeting TCF7L2 DNA binding or MAPK signaling presents a promising therapeutic strategy for CRPC-WNT.

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