Targeting the DNA methylation–H3K27me3 switch reverses castration resistance and immunosuppression via ADAMTS1-driven collagenolysis
Таргетирование переключателя метилирования ДНК–H3K27me3 обращает устойчивость к кастрации и иммуносупрессию посредством коллагенолиза, индуцированного ADAMTS1
2026-06-18
SCID: 54.1/u988d3e9
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ADAMTS1DNA methylation–H3K27me3 switchDNMT inhibitorsEZH2extracellular matrix remodeling
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Abstract (AI)
Castration-resistant prostate cancer (CRPC) lethality arises from epigenetic-driven resistance to androgen deprivation therapy (ADT). Here, we uncover a compensatory epigenetic switch between DNA methylation and H3K27me3-mediated repression as a critical barrier to epigenetic therapy in CRPC. Integrative multiomics analyses reveal that DNMT inhibitors (DNMTis) trigger EZH2-dependent H3K27me3 accumulation at the ADAMTS1 locus—a master collagenase essential for extracellular matrix (ECM) remodeling—perpetuating fibrotic niche formation and therapy resistance. Dual targeting of DNMTs and EZH2 disrupts this epigenetic plasticity, synergistically reactivating ADAMTS1 to degrade collagen-rich stroma, suppress FAK/MAPK mechanotransduction signaling, and reverse epithelial–mesenchymal transition (EMT). Crucially, in immunocompetent models, this strategy achieves >90% tumor suppression and reverses immunosuppression by enhancing cytotoxic CD8 + T cell infiltration 11.4-fold while depleting immunosuppressive macrophages and Tregs. Mechanistically, dual therapy inactivates the FAK/MAPK/EMT axis via ADAMTS1-mediated ECM degradation, overcoming stromal-mediated resistance. Our work establishes epigenetic-ECM coevolution as a hallmark of CRPC and provides a rationally designed combination therapy to dismantle the therapy-resistant niche.
Key Findings
1
A compensatory epigenetic switch between DNA methylation and H3K27me3 repression is a critical barrier to epigenetic therapy in castration-resistant prostate cancer (CRPC).
2
DNMT inhibitors (DNMTis) induce EZH2-dependent H3K27me3 accumulation at the ADAMTS1 locus, silencing ADAMTS1 and promoting a fibrotic, therapy-resistant niche.
3
Dual targeting of DNMTs and EZH2 synergistically reactivates ADAMTS1, leading to collagen-rich stroma degradation and disruption of the tumor extracellular matrix (ECM).
4
In immunocompetent models, the dual DNMT/EZH2 therapy achieves over 90% tumor suppression and increases cytotoxic CD8+ T cell infiltration 11.4-fold while depleting immunosuppressive macrophages and Tregs.
5
Mechanistically, the therapeutic effect depends on ADAMTS1-mediated ECM degradation to inactivate the FAK/MAPK/EMT axis, overcoming stromal-mediated resistance.
6
Reactivation of ADAMTS1 via combined DNMT and EZH2 inhibition suppresses FAK/MAPK mechanotransduction signaling and reverses epithelial–mesenchymal transition (EMT).
7
The study establishes epigenetic–ECM coevolution as a hallmark of CRPC and proposes a rational combination therapy to dismantle the therapy-resistant niche.
Research Object
Castration-resistant prostate cancer tumor microenvironment characterized by ADAMTS1-regulated collagen-rich stroma
Research Subject
The epigenetic DNA methylation–H3K27me3 switch controlling ADAMTS1 expression and its impact on ECM collagenolysis, FAK/MAPK/EMT signaling, therapy resistance, and antitumor immune suppression; and reversal of these via dual DNMT and EZH2 targeting
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2026-06-18
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