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獐牙菜苦酸降低雄激素受体丰度和信号转导,并诱导前列腺癌细胞 G1 期停滞。

Galbanic acid decreases androgen receptor abundance and signaling and induces G1 arrest in prostate cancer cells.

机构信息

The Hormel Institute, University of Minnesota, Austin, MN, USA.

出版信息

Int J Cancer. 2012 Jan 1;130(1):200-12. doi: 10.1002/ijc.25993. Epub 2011 May 9.

Abstract

Androgen receptor (AR) signaling is crucial for the genesis and progression of prostate cancer (PCa). We compared the growth responses of AR(+) LNCaP and LNCaP C4-2 vs. AR(-) DU145 and PC-3 PCa cell lines to galbanic acid (GBA) isolated from the resin of medicinal herb Ferula assafoetida and assessed their connection to AR signaling and cell cycle regulatory pathways. Our results showed that GBA preferentially suppressed AR(+) PCa cell growth than AR(-) PCa cells. GBA induced a caspase-mediated apoptosis that was attenuated by a general caspase inhibitor. Subapoptotic GBA downregulated AR protein in LNCaP cells primarily through promoting its proteasomal degradation, and inhibited AR-dependent transcription without affecting AR nuclear translocation. Whereas docking simulations predicted binding of GBA to the AR ligand binding domain with similarities and differences with the AR antagonist drug bicalutamide (Bic), LNCaP cell culture assays did not detect agonist activity of GBA. GBA and Bic exerted greater than additive inhibitory effect on cell growth when used together. Subapoptotic GBA induced G(1) arrest associated with an inhibition of cyclin/CDK4/6 pathway, especially cyclin D(1) without the causal involvement of cyclin-dependent kinase (CDK) inhibitory proteins P21(Cip1) and P27(Kip1) . In summary, the novelty of GBA as an anti-AR compound resides in the distinction between GBA and Bic with respect to AR protein turnover and a lack of agonist effect. Our observations of anti-AR and cell cycle arrest actions plus the anti-angiogenesis effect reported elsewhere suggest GBA as a multitargeting drug candidate for the prevention and therapy of PCa.

摘要

雄激素受体 (AR) 信号对前列腺癌 (PCa) 的发生和发展至关重要。我们比较了 AR(+) LNCaP 和 LNCaP C4-2 与 AR(-) DU145 和 PC-3 PCa 细胞系对从药用植物阿魏树脂中分离出的钩藤酸 (GBA) 的生长反应,并评估了它们与 AR 信号和细胞周期调节途径的关系。我们的结果表明,GBA 优先抑制 AR(+) PCa 细胞生长,而非 AR(-) PCa 细胞。GBA 诱导半胱天冬酶介导的细胞凋亡,被一般半胱天冬酶抑制剂减弱。亚凋亡 GBA 主要通过促进其蛋白酶体降解下调 LNCaP 细胞中的 AR 蛋白,并抑制 AR 依赖性转录,而不影响 AR 核转位。虽然对接模拟预测 GBA 与 AR 配体结合域结合,与 AR 拮抗剂药物比卡鲁胺 (Bic) 具有相似性和差异,但 LNCaP 细胞培养实验未检测到 GBA 的激动剂活性。GBA 和 Bic 一起使用时对细胞生长的抑制作用大于相加。亚凋亡 GBA 诱导 G1 期阻滞与细胞周期蛋白/CDK4/6 途径的抑制有关,尤其是 cyclin D1,而 cyclin 依赖性激酶 (CDK) 抑制蛋白 P21(Cip1) 和 P27(Kip1) 没有因果关系。总之,GBA 作为一种抗 AR 化合物的新颖性在于 GBA 与 Bic 之间的区别,涉及 AR 蛋白周转和缺乏激动剂作用。我们观察到的抗 AR 和细胞周期阻滞作用以及其他地方报道的抗血管生成作用表明,GBA 是预防和治疗 PCa 的多靶点药物候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7644/3137900/c4ace4a7b295/nihms275198f1.jpg

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