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Androgen deprivation induces double-null prostate cancer via aberrant nuclear export and ribosomal biogenesis through HGF and Wnt activation

Author

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  • Won Kyung Kim

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Alyssa J. Buckley

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Dong-Hoon Lee

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Alex Hiroto

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Christian H. Nenninger

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Adam W. Olson

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Jinhui Wang

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Zhuo Li

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Rajeev Vikram

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Yao Mawulikplimi Adzavon

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Tak-yu Yau

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Yigang Bao

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Michael Kahn

    (Cancer Center and Beckman Research Institute, City of Hope)

  • Joseph Geradts

    (East Carolina University)

  • Guang-Qian Xiao

    (University of Southern California)

  • Zijie Sun

    (Cancer Center and Beckman Research Institute, City of Hope)

Abstract

Androgen deprivation therapy (ADT) targeting androgen/androgen receptor (AR)- signaling pathways is the main therapy for advanced prostate cancer (PCa). However, ADT eventually fails in most patients who consequently develop castration-resistant prostate cancer (CRPC). While more potent AR antagonists and blockers for androgen synthesis were developed to improve clinical outcomes, they also show to induce more diverse CRPC phenotypes. Specifically, the AR- and neuroendocrine-null PCa, DNPC, occurs in abiraterone and enzalutamide-treated patients. Here, we uncover that current ADT induces aberrant HGF/MET signaling activation that further elevates Wnt/β-catenin signaling in human DNPC samples. Co-activation of HGF/MET and Wnt/β-catenin axes in mouse prostates induces DNPC-like lesions. Single-cell RNA sequencing analyses identify increased expression and activity of XPO1 and ribosomal proteins in mouse DNPC-like cells. Elevated expression of XPO1 and ribosomal proteins is also identified in clinical DNPC specimens. Inhibition of XPO1 and ribosomal pathways represses DNPC growth in both in vivo and ex vivo conditions, evidencing future therapeutic targets.

Suggested Citation

  • Won Kyung Kim & Alyssa J. Buckley & Dong-Hoon Lee & Alex Hiroto & Christian H. Nenninger & Adam W. Olson & Jinhui Wang & Zhuo Li & Rajeev Vikram & Yao Mawulikplimi Adzavon & Tak-yu Yau & Yigang Bao & , 2024. "Androgen deprivation induces double-null prostate cancer via aberrant nuclear export and ribosomal biogenesis through HGF and Wnt activation," Nature Communications, Nature, vol. 15(1), pages 1-18, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-45489-4
    DOI: 10.1038/s41467-024-45489-4
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    1. Won Kyung Kim & Adam W. Olson & Jiaqi Mi & Jinhui Wang & Dong-Hoon Lee & Vien Le & Alex Hiroto & Joseph Aldahl & Christian H. Nenninger & Alyssa J. Buckley & Robert Cardiff & Sungyong You & Zijie Sun, 2022. "Aberrant androgen action in prostatic progenitor cells induces oncogenesis and tumor development through IGF1 and Wnt axes," Nature Communications, Nature, vol. 13(1), pages 1-18, December.
    2. Junyue Cao & Malte Spielmann & Xiaojie Qiu & Xingfan Huang & Daniel M. Ibrahim & Andrew J. Hill & Fan Zhang & Stefan Mundlos & Lena Christiansen & Frank J. Steemers & Cole Trapnell & Jay Shendure, 2019. "The single-cell transcriptional landscape of mammalian organogenesis," Nature, Nature, vol. 566(7745), pages 496-502, February.
    3. Qiuhui Li & Qu Deng & Hsueh-Ping Chao & Xin Liu & Yue Lu & Kevin Lin & Bigang Liu & Gregory W. Tang & Dingxiao Zhang & Amanda Tracz & Collene Jeter & Kiera Rycaj & Tammy Calhoun-Davis & Jiaoti Huang &, 2018. "Linking prostate cancer cell AR heterogeneity to distinct castration and enzalutamide responses," Nature Communications, Nature, vol. 9(1), pages 1-17, December.
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