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首页> 外文期刊>Journal of pineal research >Antiproliferative activity of melatonin by transcriptional inhibition of cyclin D1 expression: a molecular basis for melatonin-induced oncostatic effects.
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Antiproliferative activity of melatonin by transcriptional inhibition of cyclin D1 expression: a molecular basis for melatonin-induced oncostatic effects.

机译:褪黑素通过抑制细胞周期蛋白D1表达的转录而具有抗增殖活性:褪黑素诱导的抑癌作用的分子基础。

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Melatonin is endowed with a growth inhibitory effect in MCF-7 breast cancer cells whose mechanism has been related to an antiestrogenic activity exerted by inhibition of binding of the estradiol-estrogen receptor complex to its DNA responsive element. Looking for downstream gene determinants of this effect, we performed a transcriptome profiling by high-density microarrays of estrogen-treated MCF-7 cells exposed or not to melatonin. We found that cyclin D1 was one of the main downregulated genes by melatonin. Validation experiments clearly confirm that in MCF-7 cells the estrogen-induced growth inhibitory activity of melatonin is consistently associated with inhibition of estrogen-elicited cyclin D1 induction. This effect is almost purely transcriptional. Reporter gene assays indicate that the same portion of the cyclin D1 promoter which confers estrogen sensitivity, encompassing a potential cAMP responsive element binding site, is repressed by melatonin. Transcriptional downregulation of cyclin D1 is the key molecular event for melatonin's antiproliferative activity, as this activity can be completely and selectively rescued by transient cyclin D1 overexpression. Finally, we provide indirect evidence that the effect of melatonin on the cyclin D1 promoter is mediated by the c-jun and ATF-2 proteins, known to bind the minimal estrogen-sensitive cyclin D1 promoter element. These findings establish for the first time a molecular link between melatonin and its effects on the cell cycle, providing at the same time a rationale for its use in adjuvant chemotherapy.
机译:褪黑素在MCF-7乳腺癌细胞中具有生长抑制作用,其机制与通过抑制雌二醇-雌激素受体复合物与其DNA反应元件的结合而发挥的抗雌激素活性有关。寻找这种作用的下游基因决定因素,我们通过高密度微阵列对褪黑激素暴露或未暴露的雌激素处理的MCF-7细胞进行了转录组分析。我们发现细胞周期蛋白D1是褪黑激素的主要下调基因之一。验证实验清楚地证实,在MCF-7细胞中,褪黑激素的雌激素诱导的生长抑制活性与雌激素引起的细胞周期蛋白D1诱导的抑制作用始终相关。这种作用几乎是纯转录的。报告基因检测表明,褪黑素可抑制细胞周期蛋白D1启动子赋予雌激素敏感性的相同部分,包括潜在的cAMP响应元件结合位点。细胞周期蛋白D1的转录下调是褪黑素抗增殖活性的关键分子事件,因为这种活性可以通过瞬时细胞周期蛋白D1的过表达完全而有选择地挽救。最后,我们提供了间接证据表明褪黑素对细胞周期蛋白D1启动子的作用是由c-jun和ATF-2蛋白介导的,已知这些蛋白会结合最小的雌激素敏感性细胞周期蛋白D1启动子元件。这些发现首次建立了褪黑激素与其对细胞周期的影响之间的分子联系,同时为在辅助化疗中使用它提供了理论依据。

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