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ZDHHC2-Dependent Palmitoylation Dictates Ferroptosis and Castration Sensitivity in Prostate Cancer via Controlling ACSL4 Degradation and Lipid Peroxidation.

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 2026 Vol.13(1) p. e14077

Shao S, Li W, Hong Y, Zeng R, Zhu L, Yi L, Li Y, Wang Y, Huang H, Jiang X, Jin X

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Ferroptosis represents a promising vulnerability to overcome therapeutic resistance in castration-resistant prostate cancer (CRPC).

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APA Shao S, Li W, et al. (2026). ZDHHC2-Dependent Palmitoylation Dictates Ferroptosis and Castration Sensitivity in Prostate Cancer via Controlling ACSL4 Degradation and Lipid Peroxidation.. Advanced science (Weinheim, Baden-Wurttemberg, Germany), 13(1), e14077. https://doi.org/10.1002/advs.202514077
MLA Shao S, et al.. "ZDHHC2-Dependent Palmitoylation Dictates Ferroptosis and Castration Sensitivity in Prostate Cancer via Controlling ACSL4 Degradation and Lipid Peroxidation.." Advanced science (Weinheim, Baden-Wurttemberg, Germany), vol. 13, no. 1, 2026, pp. e14077.
PMID 41126755

Abstract

Ferroptosis represents a promising vulnerability to overcome therapeutic resistance in castration-resistant prostate cancer (CRPC). While S-palmitoylation of lipid peroxide-scavenging proteins such as GPX4 and SLC7A11 has been shown to suppress ferroptosis, whether palmitoylation modulates the lipid peroxidation generation remains unclear. Here, we identified the palmitoyltransferase ZDHHC2 as a critical driver of enzalutamide resistance through destabilizing ACSL4. ZDHHC2 is transcriptionally upregulated by a FOXA1/CXXC5/TET2 complex and promotes S-palmitoylation of the deubiquitinase USP19, which impairs its interaction with ACSL4. This disrupts USP19-mediated ACSL4 stabilization, promoting its ubiquitin-proteasome degradation and consequently suppressing lipid peroxidation and ferroptosis. We synthesized a small-molecule ZDHHC2 inhibitor, TTZ1, which restores ACSL4 protein, reactivates ferroptosis, and reverses enzalutamide resistance in CRPC cell lines and patient-derived xenograft models. This study uncovers a previously unrecognized mechanism by which palmitoylation regulates ferroptosis through modulating ACSL4 stability, and highlights the ZDHHC2-USP19-ACSL4 axis as a druggable target for overcoming resistance in advanced prostate cancer.

MeSH Terms

Ferroptosis; Male; Humans; Animals; Prostatic Neoplasms, Castration-Resistant; Coenzyme A Ligases; Mice; Lipoylation; Long-Chain-Fatty-Acid-CoA Ligase; Lipid Peroxidation; Cell Line, Tumor; Acyltransferases; Benzamides; Nitriles; Drug Resistance, Neoplasm; Phenylthiohydantoin

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