본문으로 건너뛰기
← 뒤로

Noncanonical functions of UGT2B17 promote castration-resistant prostate cancer progression.

The Journal of clinical investigation 2026 Vol.136(2)

Feng T, Xie N, Gao L, Jia Q, Kung SH, Morova T, Li Y, Wang L, Fazli L, Lacombe L, Guillemette C, Lévesque E, Lack NA, Qi J, Han B, Dong X

📝 환자 설명용 한 줄

Androgen deprivation therapy is the primary treatment for advanced prostate tumors.

이 논문을 인용하기

BibTeX ↓ RIS ↓
APA Feng T, Xie N, et al. (2026). Noncanonical functions of UGT2B17 promote castration-resistant prostate cancer progression.. The Journal of clinical investigation, 136(2). https://doi.org/10.1172/JCI196495
MLA Feng T, et al.. "Noncanonical functions of UGT2B17 promote castration-resistant prostate cancer progression.." The Journal of clinical investigation, vol. 136, no. 2, 2026.
PMID 41343245
DOI 10.1172/JCI196495

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.

MeSH Terms

Male; Glucuronosyltransferase; Prostatic Neoplasms, Castration-Resistant; Humans; Minor Histocompatibility Antigens; Animals; Mice; Cell Line, Tumor; Neoplasm Proteins; Disease Progression; Cell Proliferation

같은 제1저자의 인용 많은 논문 (5)