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Data from JMJD6 Is a Druggable Oxygenase That Regulates AR-V7 Expression in Prostate Cancer

Posted on 2023-03-31 - 04:06
Abstract

Endocrine resistance (EnR) in advanced prostate cancer is fatal. EnR can be mediated by androgen receptor (AR) splice variants, with AR splice variant 7 (AR-V7) arguably the most clinically important variant. In this study, we determined proteins key to generating AR-V7, validated our findings using clinical samples, and studied splicing regulatory mechanisms in prostate cancer models. Triangulation studies identified JMJD6 as a key regulator of AR-V7, as evidenced by its upregulation with in vitro EnR, its downregulation alongside AR-V7 by bromodomain inhibition, and its identification as a top hit of a targeted siRNA screen of spliceosome-related genes. JMJD6 protein levels increased (P < 0.001) with castration resistance and were associated with higher AR-V7 levels and shorter survival (P = 0.048). JMJD6 knockdown reduced prostate cancer cell growth, AR-V7 levels, and recruitment of U2AF65 to AR pre-mRNA. Mutagenesis studies suggested that JMJD6 activity is key to the generation of AR-V7, with the catalytic machinery residing within a druggable pocket. Taken together, these data highlight the relationship between JMJD6 and AR-V7 in advanced prostate cancer and support further evaluation of JMJD6 as a therapeutic target in this disease.

Significance:

This study identifies JMJD6 as being critical for the generation of AR-V7 in prostate cancer, where it may serve as a tractable target for therapeutic intervention.

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FUNDING

cDNA

Cancer Research UK

European Research Council

Swiss Cancer

Swiss National Science Foundation

Prostate Cancer Foundation

Italian Association for Cancer Research

CRUK

Wellcome Trust

DOD

Prostate Cancer UK

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Cancer Research

AUTHORS (33)

  • Alec Paschalis
    Jonathan Welti
    Antje J. Neeb
    Wei Yuan
    Ines Figueiredo
    Rita Pereira
    Ana Ferreira
    Ruth Riisnaes
    Daniel Nava Rodrigues
    Juan M. Jiménez-Vacas
    Soojin Kim
    Takuma Uo
    Patrizio Di Micco
    Anthony Tumber
    Md. Saiful Islam
    Marc A. Moesser
    Martine Abboud
    Akane Kawamura
    Bora Gurel
    Rossitza Christova

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