前列腺癌
雄激素
雄激素受体
睾酮(贴片)
癌症研究
PI3K/AKT/mTOR通路
蛋白激酶B
下调和上调
信号转导
生物
ETS1型
内分泌学
化学
内科学
细胞生物学
癌症
转录因子
医学
生物化学
激素
基因
作者
Yanan Gu,Shiqi Wu,Yue Chong,Bing Guan,Lei Li,Dalin He,Xinyang Wang,Bin Wang,Kaijie Wu
标识
DOI:10.1016/j.cellsig.2022.110336
摘要
The intratumoral androgen synthesis is one of the mechanisms by which androgen receptor (AR) is aberrantly re-activated in castration-resistant prostate cancer (CRPC) after androgen ablation. However, pathways controlling steroidogenic enzyme expression and de novo androgen synthesis in prostate cancer (PCa) cells are largely unknown. In this study, we explored the potential roles of DAB2IP in testosterone synthesis and CRPC tumor growth. Indeed, DAB2IP loss could maintain AR transcriptional activity, PSA re-expression and tumor growth under castrated condition in vitro and in vivo, and reprogram the expression profiles of steroidogenic enzymes, including AKR1C3. Mechanistically, DAB2IP could dramatically inhibit the AKR1C3 promoter activity and the conversion from androgen precursors (i.e., DHEA) to testosterone through PI3K/AKT/mTOR/ETS1 signaling. Consistently, there was a high co-expression of ETS1 and AKR1C3 in PCa tissues and xenografts, and their expression in prostate tissues could also restore AR nuclear staining in castrated DAB2IP-/- mice after DHEA supplement. Together, this study reveals a novel regulation of intratumoral de novo androgen synthesis in CRPC, and provides the DAB2IP/ETS1/AKR1C3 signaling as a potential therapeutic target.
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