DPYSL5 is highly expressed in treatment-induced neuroendocrine prostate cancer and promotes lineage plasticity via EZH2/PRC2

Author:

Kaarijärvi RoosaORCID,Kaljunen HeidiORCID,Nappi Lucia,Fazli Ladan,Kung Sonia H. Y.ORCID,Hartikainen Jaana M.ORCID,Paakinaho VilleORCID,Capra Janne,Rilla KirsiORCID,Malinen Marjo,Mäkinen Petri I.,Ylä-Herttuala SeppoORCID,Zoubeidi AminaORCID,Wang YuzhuoORCID,Gleave Martin E.,Hiltunen Mikko,Ketola KirsiORCID

Abstract

AbstractTreatment-induced neuroendocrine prostate cancer (t-NEPC) is a lethal subtype of castration-resistant prostate cancer resistant to androgen receptor (AR) inhibitors. Our study unveils that AR suppresses the neuronal development protein dihydropyrimidinase-related protein 5 (DPYSL5), providing a mechanism for neuroendocrine transformation under androgen deprivation therapy. Our unique CRPC-NEPC cohort, comprising 135 patient tumor samples, including 55 t-NEPC patient samples, exhibits a high expression of DPYSL5 in t-NEPC patient tumors. DPYSL5 correlates with neuroendocrine-related markers and inversely with AR and PSA. DPYSL5 overexpression in prostate cancer cells induces a neuron-like phenotype, enhances invasion, proliferation, and upregulates stemness and neuroendocrine-related markers. Mechanistically, DPYSL5 promotes prostate cancer cell plasticity via EZH2-mediated PRC2 activation. Depletion of DPYSL5 decreases proliferation, induces G1 phase cell cycle arrest, reverses neuroendocrine phenotype, and upregulates luminal genes. In conclusion, DPYSL5 plays a critical role in regulating prostate cancer cell plasticity, and we propose the AR/DPYSL5/EZH2/PRC2 axis as a driver of t-NEPC progression.

Funder

Academy of Finland, Sigrid Jusélius Foundation, Finnish Cultural Foundation, Finnish Cultural Foundation North Savo Regional Fund, the Cancer Foundation Finland.

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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