Kretzschmar Georg, Vollmer Günter, Schwab Pia, Tischer Sandra, Metz Peter, Zierau Oliver
Institut für Zoologie, Technische Universität Dresden, Germany.
J Steroid Biochem Mol Biol. 2007 Oct;107(1-2):114-9. doi: 10.1016/j.jsbmb.2007.02.008. Epub 2007 Jun 8.
The flavanone naringenin is known to possess only weak estrogenic properties, but some of its derivatives such as 8-prenylnaringenin are potent phytoestrogens. The aim of this study was to further clarify structure-function relationships of flavanones regarding their estrogenic or antiestrogenic properties by characterizing the new chemically synthesized naringenin derivative 7-(O-prenyl)naringenin-4'-acetate (7-O-PN). A yeast based reporter gene assay and MVLN cells, a MCF-7-derived cell line that possesses a luciferase reporter gene under the control of a vitellogenin estrogen responsive element, were used to investigate estrogenic actions of 7-O-PN in vitro. Estradiol (E2) has been used as a positive control. Subsequently a 3-day rat uterotrophic assay was performed to test for estrogenic effects. In addition, mRNA expression of estrogen sensitive genes in the uteri of these rats was measured using real time rtPCR. While E2 leads to a strong dose dependent signal in the yeast based reporter gene assay and in MVLN cells, 7-O-PN shows mild E2 antagonistic properties at concentrations 10(-8) and 10(-7)M, E2 agonistic properties at 10(-6) and 10(-5)M in MVLN cells and no effects on the yeast based system. In contrast to E2 treatment, 7-O-PN treatment did not increase uterus wet weight compared to the negative control. These findings are supported by mRNA expression studies of proliferation markers. Additionally, mRNA expression studies of estrogen regulated genes revealed very strong antiestrogenic properties of 7-O-PN regarding regulation of complement C3 expression while some estrogenic effects could be observed on the expression of estrogen receptor beta, clusterin and possibly on progesterone receptor and vascular endothelial growth factor.
已知黄烷酮柚皮素仅具有微弱的雌激素特性,但其一些衍生物,如8-异戊烯基柚皮素是强效植物雌激素。本研究的目的是通过对新化学合成的柚皮素衍生物7-(O-异戊烯基)柚皮素-4'-乙酸酯(7-O-PN)进行表征,进一步阐明黄烷酮在雌激素或抗雌激素特性方面的结构-功能关系。基于酵母的报告基因检测和MVLN细胞(一种源自MCF-7的细胞系,其在卵黄蛋白原雌激素反应元件的控制下拥有荧光素酶报告基因)被用于体外研究7-O-PN的雌激素作用。雌二醇(E2)用作阳性对照。随后进行了为期3天的大鼠子宫增重试验以测试雌激素效应。此外,使用实时rtPCR测量这些大鼠子宫中雌激素敏感基因的mRNA表达。虽然E2在基于酵母的报告基因检测和MVLN细胞中导致强烈的剂量依赖性信号,但7-O-PN在浓度为10(-8)和10(-7)M时显示出轻度的E2拮抗特性,在10(-6)和10(-5)M时在MVLN细胞中显示出E2激动特性,并且对基于酵母的系统无影响。与E2处理相反,与阴性对照相比,7-O-PN处理并未增加子宫湿重。这些发现得到了增殖标志物mRNA表达研究的支持。此外,雌激素调节基因的mRNA表达研究表明,7-O-PN在补体C3表达调节方面具有非常强的抗雌激素特性,而在雌激素受体β、簇集素的表达上以及可能在孕激素受体和血管内皮生长因子的表达上可观察到一些雌激素效应。