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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Retinoic Acid Stimulates Expression of 11#beta#-Hydroxysteroid Dehydrogenase Type 2 in Human Choriocarcinoma JEG-3 Cells
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Retinoic Acid Stimulates Expression of 11#beta#-Hydroxysteroid Dehydrogenase Type 2 in Human Choriocarcinoma JEG-3 Cells

机译:维甲酸可刺激人绒毛膜癌JEG-3细胞中11#beta#-羟基类固醇脱氢酶2型的表达。

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摘要

The syncytiotrophoblasts of the human placenta express high levels of 11#beta#-hydroxysteroid dehydrogenase type 2 (11#beta#-HSD2), the enzyme responsible for the inactivation of glucocorticoids. It has been proposed that the placental 11#beta#-HSD2 serves as a barrier to protect the fetus from high levels of maternal cortisol. To examine the hypothesis that nutritional signals regulate the expression of 11#beta#-HSD2 in placental syncytiotrophoblasts, we investigated the effects of retinoic acids (RAs), the major metabolites of vitamin A, on the expression of 11#beta#-HSD2 using human choriocarcinoma JEG-3 cells as a model. This trophoblast-like cell line displays a number of functional similarities to the syncytiotrophoblast. Treatment for 24 h with all-trans RA (1-1000 nM) resulted in a dose-dependent increase in 11#beta#-HSD2 activity with a maximal effect (increase to 3-fold) at 100 nM. The effect of all-trans RA (100 nM) was also time-dependent in that the effect was detectable at 6 h and reached its maximum by 48 h. Similar increases in 11#beta#-HSD2 activity were observed when the cells were treated with 9-cis RA. Results from semiquantitative reverse transcription-polymerase chain reaction demonstrated that there was a corresponding increase in 11#beta#-HSD2 mRNA after RA treatment. Moreover, treatment with actinomycin D (100 ng/ml) abrogated the increase in 11#beta#-HSD2 mRNA induced by RA, indicating an effect on transcription. In conclusion, the present study has demonstrated for the first time that RA, at physiological concentrations, induces 11#beta#-HSD2 gene expression and enzyme activity in JEG-3 cells. If this occurs in vivo, the present finding suggests that high expression of 11#beta#-HSD2 in the human placenta may be maintained, at least in part, by dietary intake of vitamin A.
机译:人胎盘的滋养滋养细胞表达高水平的11#beta#-羟基类固醇脱氢酶2型(11#beta#-HSD2),该酶负责糖皮质激素的失活。已经提出胎盘11#β#-HSD2用作保护胎儿免于高水平的母亲皮质醇的屏障。为了检查营养信号调节胎盘合体滋养层细胞中11#beta#-HSD2表达的假设,我们使用维生素A的主要代谢物维甲酸(RAs),使用以下方法研究了11#beta#-HSD2表达的影响:人类绒癌组织JEG-3细胞为模型。这种滋养层样细胞系与合体滋养层细胞显示出许多功能相似性。用全反式RA(1-1000 nM)处理24 h导致11#beta#-HSD2活性呈剂量依赖性增加,在100 nM时作用最大(增至3倍)。全反式RA(100 nM)的作用也是时间依赖性的,因为该作用在6 h即可检测到,并在48 h达到最大。当用9-顺式RA处理细胞时,观察到11#beta#-HSD2活性的类似增加。半定量逆转录-聚合酶链反应的结果表明,RA处理后11#beta#-HSD2 mRNA相应增加。此外,放线菌素D(100 ng / ml)的处理消除了RA诱导的11#beta#-HSD2 mRNA的增加,表明对转录有影响。总之,本研究首次证明了在生理浓度下的RA可以诱导JEG-3细胞中的11#beta#-HSD2基因表达和酶活性。如果这在体内发生,则本发现表明,至少部分地通过饮食摄入维生素A可以维持人胎盘中11#beta#-HSD2的高表达。

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