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January 18, 20260 citationsOpen Access

A Double-Negative Prostate Cancer Subtype is Vulnerable to SWI/SNF-Targeting Degrader Molecules.

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PTPhillip ThiengerIPIrene PaassenXYXiaosai Yao

Key Points

  • To investigate the effectiveness of SWI/SNF-targeting agents in androgen receptor-negative prostate cancer (CRPC-WNT).
  • Examined the effects of SWI/SNF-targeting PROTAC treatment on cell lines and organoid models.
  • Assessed the impact of SMARCA4 depletion on transcription regulation in CRPC-WNT.
  • Analyzed the role of TCF7L2 in the MAPK signaling axis associated with CRPC-WNT.
  • SWI/SNF-targeting therapies reduced the viability of CRPC-AR and CRPC-WNT models.
  • CRPC-WNT represents approximately 11% of global CRPC cases leading to mortality.
  • TCF7L2 regulated proliferation through MAPK signaling in the CRPC-WNT subtype.

Abstract

Proteolysis targeting chimera (PROTAC) therapies degrading SWI/SNF ATPases interfere with androgen receptor (AR) signaling in AR-dependent castration-resistant prostate cancer (CRPC-AR). To explore the utility of SWI/SNF therapy beyond AR-sensitive CRPC, we investigated SWI/SNF-targeting agents in AR-negative CRPC. SWI/SNF targeting PROTAC treatment of cell lines and organoid models reduced the viability of not only CRPC-AR but also WNT signaling dependent AR-negative CRPC (CRPC-WNT). The CRPC-WNT subgroup represents 11% of around 400,000 cases of CRPC worldwide who die yearly of CRPC. SWI/SNF ATPase SMARCA4 depletion interfered with the master transcriptional regulator TCF7L2 in CRPC-WNT. Functionally, TCF7L2 maintained proliferation via the MAPK signaling axis in this subtype of CRPC. Together, these data provide a mechanistic rationale for interventions that perturb DNA binding of the pro-proliferative transcription factor TCF7L2 and/or direct MAPK signaling inhibition in the CRPC-WNT subclass of advanced prostate cancer.

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Cite This Study

Thienger et al. (2026) studied this question.

synapsesocial.com/papers/696c7835eb60fb80d139663chttps://doi.org/10.48620/93938
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