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首页> 外文期刊>Molecular Carcinogenesis >Expression of prostate-specific antigen is transcriptionally regulated by genistein in prostate cancer cells.
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Expression of prostate-specific antigen is transcriptionally regulated by genistein in prostate cancer cells.

机译:染料木黄酮在前列腺癌细胞中转录调节前列腺特异性抗原的表达。

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摘要

Prostate cancer is the second-leading cause of cancer-related deaths in men in the United States. Unfortunately, there is no effective therapy when prostate cancer becomes metastatic and refractory to conventional treatments. For this reason, the identification and exploration of new agents that reduce prostate cancer cell growth are of paramount importance. High consumption of plant-derived phytoestrogens is inversely associated with the incidence and mortality rate of prostate cancer. Previous studies, including our own, have shown that the phytoestrogen genistein inhibits prostate cancer cell growth in vitro and in vivo and decreases secreted and intracellular levels of the androgen-regulated protein prostate-specific antigen (PSA), but the role of genistein as an agonist/antagonist for hormone receptors remains unclear. To elucidate the mechanism by which genistein modulates PSA protein expression in prostate cancer cells, we investigated the effects of genistein on androgen-mediated and estrogen-mediated transcriptional regulation of PSA, androgen receptor (AR) mRNA and protein expression, and the ability of nuclear proteins to bind to androgen-response elements (AREs) in LNCaP cells. We showed that genistein decreased the transcriptional activation of PSA by both androgen-dependent and androgen-independent methods in LNCaP cells. The reduction of androgen-mediated transcriptional activation of PSA was correlated with decreased AR protein and mRNA levels and decreased binding to AREs. In contrast, genistein had differential effects on 17beta-estradiol-mediated PSA expressions. Low concentrations of genistein enhanced 17beta-estradiol-mediated PSA expressions, whereas high concentrations of genistein inhibited estrogen-mediated PSA expression in LNCaP cells. Genistein did not inhibit AR protein expression in the presence of 17beta-estradiol. These results suggest that ligand-dependent differences in the ability to activate PSA expression may contribute to the agonistic/antagonistic responses observed with genistein in prostate cancer cells.
机译:前列腺癌是美国男性与癌症相关的死亡的第二大原因。不幸的是,当前列腺癌变成转移性的并且对常规治疗无效时,没有有效的疗法。由于这个原因,减少前列腺癌细胞生长的新药物的鉴定和探索至关重要。植物来源的植物雌激素的高消耗与前列腺癌的发病率和死亡率成反比。包括我们自己在内的以前的研究表明,植物雌激素染料木黄酮可在体外和体内抑制前列腺癌细胞的生长,并降低雄激素调节蛋白前列腺特异抗原(PSA)的分泌水平和细胞内水平,但染料木黄酮的作用是激素受体的激动剂/拮抗剂尚不清楚。为了阐明金雀异黄素调节前列腺癌细胞中PSA蛋白表达的机制,我们研究了金雀异黄素对雄激素介导和雌激素介导的PSA转录调节,雄激素受体(AR)mRNA和蛋白质表达以及核能力的影响。蛋白质与LNCaP细胞中的雄激素反应元件(ARE)结合。我们显示金雀异黄素通过LNCaP细胞中雄激素依赖性和雄激素非依赖性方法均降低了PSA的转录激活。雄激素介导的PSA转录激活的减少与AR蛋白和mRNA水平降低以及与ARE的结合降低有关。相比之下,金雀异黄素对17β-雌二醇介导的PSA表达有不同的影响。低浓度的染料木黄酮可增强17β-雌二醇介导的PSA表达,而高浓度的染料木黄酮可抑制LNCaP细胞中雌激素介导的PSA表达。在17β-雌二醇存在下,染料木黄酮不抑制AR蛋白的表达。这些结果表明激活PSA表达的能力中依赖配体的差异可能有助于染料木黄酮在前列腺癌细胞中观察到的激动/拮抗反应。

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