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Androgen receptor acts as the transcriptional repressor of the nuclear receptor LRH-1 via the androgen-driven chromatin looping conformation in prostate cancer.

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Genes & diseases 📖 저널 OA 100% 2022: 1/1 OA 2024: 8/8 OA 2025: 25/25 OA 2026: 60/60 OA 2022~2026 2026 Vol.13(4) p. 101903 OA Prostate Cancer Treatment and Resear
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PubMed DOI PMC OpenAlex 마지막 보강 2026-04-28
OpenAlex 토픽 · Prostate Cancer Treatment and Research Genomics and Chromatin Dynamics Genetic factors in colorectal cancer

You W, Gao T, Li H, Lam DHT, Xie W, Xiao L

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The androgen receptor (AR) signaling axis is regarded as the key driver of prostate cancer (PCa).

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APA Wenxing You, Tiantian Gao, et al. (2026). Androgen receptor acts as the transcriptional repressor of the nuclear receptor LRH-1 via the androgen-driven chromatin looping conformation in prostate cancer.. Genes & diseases, 13(4), 101903. https://doi.org/10.1016/j.gendis.2025.101903
MLA Wenxing You, et al.. "Androgen receptor acts as the transcriptional repressor of the nuclear receptor LRH-1 via the androgen-driven chromatin looping conformation in prostate cancer.." Genes & diseases, vol. 13, no. 4, 2026, pp. 101903.
PMID 42004222 ↗

Abstract

The androgen receptor (AR) signaling axis is regarded as the key driver of prostate cancer (PCa). Besides acting as a well-characterized transactivator of diverse targets, accumulating evidence suggests that AR can also function as a transrepressor. However, AR-repressed targets and their significance in PCa and castration-resistant PCa (CRPC) remain poorly understood. Among multiple mechanisms, intratumoral androgen biosynthesis is regarded as an important factor responsible for persistent AR signaling in CRPC. Previously, we characterized that the nuclear receptor LRH-1 () plays a key role in the promotion of intratumoral androgen biosynthesis in CRPC via its direct transcriptional control of multiple key steroidogenic enzymes. However, the transcriptional control of LRH-1 in PCa is still undefined. In this study, we show that androgen-activated AR could suppress, whereas antiandrogen-suppressed AR could up-regulate the LRH-1 expression in PCa cells. Furthermore, our genomics analysis showed that the transcriptional repression of by ligand-activated AR was mediated through the induction of a distinct androgen-dependent chromatin looping formed within the topologically associated domain of via direct binding of AR to the regulatory elements of . Our present study demonstrates the significance of decreased androgen levels in androgen-deprivation therapy, resulting in the relief or up-regulation of LRH-1 toward intratumoral androgen biosynthesis in CRPC.

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