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Publication:
Noncanonical functions of UGT2B17 promote castration-resistant prostate cancer progression

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SCHOOL OF MEDICINE
Upper Org Unit

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Feng T.

Xie N.

Gao L.

Jia Q.

Kung S.H.

Morova T.

Li Y.

Wang L.

Fazli L.

Lacombe L.

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Abstract

Androgen deprivation therapy is the primary treatment for advanced prostate tumors. While initially effective, tumor progression to the therapy-resistant stage is inevitable. Paradoxically, UDP glucuronosyltransferase family 2 member B17 (UGT2B17), the key enzyme responsible for androgen catabolism in prostate tumor cells, is upregulated in therapy-resistant tumors, though its role in tumor progression remains unclear. Here, we demonstrate that UGT2B17 possesses multiple oncogenic functions independent of androgen catabolism. It modulates protein-folding pathways, allowing tumor cells to endure therapy-induced stress. UGT2B17 also regulates transcription associated with cell division and the DNA damage response, enabling unchecked cell proliferation. Targeting the newly identified UGT2B17 functions using a combination of inhibitors reduced tumor growth in therapy-resistant tumor models, highlighting a promising therapeutic strategy. Collectively, these findings reveal a mechanism by which prostate tumors exploit UGT2B17 to evade therapy and highlight its potential as a therapeutic target in advanced prostate cancer.

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The Journal of Clinical Investigation

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DOI

10.1172/JCI196495

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CC BY (Attribution)

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Except where otherwise noted, this item's license is described as CC BY (Attribution)

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