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A genome-wide CRISPR screen in human prostate cancer cells reveals drivers of macrophage-mediated cell killing and positions AR as a tumor-intrinsic immunomodulator.

Anniek Zaalberg ,
Audrey Lacoste ,
Emma Minnee ,
Isabel Mayayo-Peralta ,
Karianne Schuurman ,
Sebastian Gregoricchio ,
Thijs A van Schaik ,
Liesbeth Hoekman ,
Dapei Li ,
Eva Corey ,
Hans Janssen ,
Cor Lieftink ,
Stefan Prekovic ,
Natalie Proost ,
Marieke van de Ven ,
Serge Zander ,
Maarten Altelaar ,
Peter S Nelson ,
Roderick L Beijersbergen ,
Wilbert Zwart ,
Andries M Bergman

Abstract

Macrophages are the most abundant immune cells in the prostate tumor microenvironment and capable of killing tumor cells, but tumor intrinsic modulators of resistance to the innate immune system are unknown. To identify genes essential for macrophage-mediated killing, we performed a genome-wide co-culture CRISPR screen and identified Androgen Receptor (AR), PRKCD, and multiple components of the NF-κB pathway (IKBKB/IKBKG/CHUK) as tumor-intrinsic essential factors to allow for macrophage-mediated killing. Mechanistically, both AR and NF-κB directly drive expression of PRKCD within cancer cells, functionally implicating all hits within one molecular pathway. Importantly, androgen deprivation and AR-inhibition both rendered tumor cells resistant to macrophage-mediated killing, which positions tumor-intrinsic AR signaling as a bona fide immunomodulatory pathway. Proteomic analyses showed a selective downregulation of the oxidative phosphorylation pathway in PRKCD- and IKBKG-KO cells, suggesting impaired mitochondrial function, which was confirmed by electron microscopy analyses. Finally, phosphoproteomic analyses revealed that all hits perturbing macrophage-mediated tumor cell eradication, impaired ferroptosis signaling in the tumor cells, which was confirmed transcriptionally using samples from a neoadjuvant phase II clinical trial with the AR-inhibitor enzalutamide. These data reveal immune protection from macrophages as an adverse consequence of hormonal therapy in prostate cancer patients.

More about this publication

Oncogene

Publication date 28-07-2026

Full text links

Publisher website (DOI) 10.1038/s41388-026-03912-8
Europe PubMed Central 42521833
Pubmed 42521833

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