首页> 外文期刊>Journal of Agricultural and Food Chemistry >Estrogenic and Antiestrogenic Activities of Phytoalexins from Red Kidney Bean (Phaseolus vulgaris L.)
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Estrogenic and Antiestrogenic Activities of Phytoalexins from Red Kidney Bean (Phaseolus vulgaris L.)

机译:红芸豆(Phaseolus vulgaris L.)植物抗毒素的雌激素和抗雌激素活性

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Legumes are the predominant source of isoflavones considered to be phytoestrogens that mimic the hormone 17β-estradiol (E2). Due to the risks associated with hormone replacement therapy, there is a growing need for alternative sources of estrogenic formulations for the treatment of menopausal symptoms. Legume phytoalexins (induced isoflavones) are produced under conditions of stress that include insect damage, wounding, or application of elicitors. The estrogenic and antiestrogenic activities of methanolic extracts obtained from red kidney bean treated with the fungus Aspergillus sojae were compared with those of untreated controls using an estrogen responsive element-based (ERE) luciferase reporter assay. A. spjae-treated red kidney bean extracts displayed both estrogenic and antiestrogenic activities. Analysis of elicitor-treated red kidney bean extracts showed that A. sojae treatments achieved maximal levels of kievitone at 1199 ± 101 μg/g and phaseollin at 227.8 ± 44 μg/g. The phytoalexins kievitone and phaseollin were isolated from A. sojae-treated red kidney bean extracts and analyzed for estrogenic activity using ERa and ERβ binding, ERE luciferase assays in MCF-7 and HEK 293 cells, and MCF-7 cell proliferation. Kievitone showed the highest relative binding affinity to ERa with kievitone (0.48%) > phaseollin (0.21%), and phaseollin showed the highest relative binding affinity to ER/3 with phaseollin (0.53%) > kievitone (0.42%). In an ERE luciferase assay in MCF-7 cells, kievitone displayed high ER transactivation at 10μM; phaseollin displayed low ER transactivation. Both kievitone and phaseollin stimulated MCF-7 cell proliferation, with kievitone displaying agonist activity between 0.1 and 10 μM. Cotransfection reporter assays performed in HEK 293 demonstrated that phaseollin selectively increased ERE transcriptional activity of ERβ and kievitone selectively increased ERE transcriptional activity of ERa. Although phaseollin displayed attenuation of ER transactivation in the ERE luciferase assay in MCF-7 cells, both phytoalexins attenuated the effects of E2 in an MCF-7 cell colonial survival assay. This work provides evidence that the red kidney bean phytoalexins kievitone and phaseollin possess both estrogenic and antiestrogenic activities.
机译:豆类是异黄酮的主要来源,异黄酮被认为是模仿激素17β-雌二醇(E2)的植物雌激素。由于与激素替代疗法有关的风险,对治疗更年期症状的雌激素制剂的替代来源的需求日益增长。豆科植物抗毒素(诱导的异黄酮)是在包括昆虫伤害,伤害或引发剂施用在内的压力条件下产生的。使用基于雌激素反应性元素(ERE)的荧光素酶报告基因检测法,比较了用酱油曲霉(Aspergillus sojae)处理过的红芸豆获得的甲醇提取物的甲醇提取物的雌激素和抗雌激素活性。 A. spjae处理的红芸豆提取物显示出雌激素和抗雌激素活性。经激发子处理的红芸豆提取物的分析表明,大豆浸膏处理可实现的最大齐维酮水平为1199±101μg/ g,菜豆酚为227.8±44μg/ g。从大豆处理过的红芸豆提取物中分离出植物抗毒素毒素基维酮和菜豆酚,并使用ERa和ERβ结合,MCF-7和HEK 293细胞中的ERE荧光素酶测定以及MCF-7细胞增殖来分析雌激素活性。基辅酮对基拉酮(0.48%)>菜豆素(0.21%)的对ERa的相对结合亲和力最高,而相木酚对菜豆酚(0.53%)>​​酮酸(0.42%)的ER / 3的相对亲和力最高。在MCF-7细胞的ERE萤光素酶测定中,基维酮在10μM时显示出高ER反式激活;而菜豆素显示出低的ER反式激活。 Kievitone和菜豆酚都刺激MCF-7细胞增殖,并且Kievitone显示的激动剂活性介于0.1和10μM之间。在HEK 293中进行的共转染报道基因分析表明,菜豆素选择性增加了ERβ的ERE转录活性,而基维酮选择性增加了ERa的ERE转录活性。尽管菜豆素在MCF-7细胞的ERE荧光素酶测定中显示出ER反式激活减弱,但两种植物抗毒素均在MCF-7细胞结肠存活测定中减弱了E2的作用。这项工作提供了证据,表明红芸豆植物抗毒素齐维酮和菜豆素同时具有雌激素和抗雌激素活性。

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