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首页> 外文期刊>Endocrinology >A Long Noncoding RNA, lncRNA-Amhr2, Plays a Role in Amhr2 Gene Activation in Mouse Ovarian Granulosa Cells
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A Long Noncoding RNA, lncRNA-Amhr2, Plays a Role in Amhr2 Gene Activation in Mouse Ovarian Granulosa Cells

机译:长度非编码RNA,LNCRNA-AMHR2在小鼠卵巢颗粒细胞中的AMHR2基因活化中起作用

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摘要

Anti-Mullerian hormone (AMH) is critical to the regression of Mullerian ducts during mammalian male differentiation and targets ovarian granulosa cells and testicular Sertoli and Leydig cells of adults. Specific effects of AMH are exerted via its receptor, AMH type II receptor (Amhr2), but the mechanism by which the Amhr2 gene is specifically activated is not fully understood. To see whether a proximal promoter was sufficient for Amhr2 gene activation, we generated transgenic mice that bore the enhanced green fluorescent protein (EGFP) gene driven by a 500-bp mouse Amhr2 gene promoter. None of the established 10 lines, however, showed appropriate EGFP expression, indicating that the 500-bp promoter was insufficient for Amhr2 gene activation. As a regulatory element, we found a long noncoding RNA, lncRNA-Amhr2, transcribed from upstream of the Amhr2 gene in ovarian granulosa cells and testicular Sertoli cells. In primary granulosa cells, knockdown of lncRNA-Amhr2 resulted in a decrease of Amhr2 messnger RNA level, and a transient reporter gene assay showed that lncRNA-Amhr2 activation increased Amhr2 promoter activity. The activity was correlated with lncRNA-Amhr2 transcription in stably transfected OV3121 cells derived from mouse granulosa cells. Moreover, by the Tet-on system, the induction of lncRNA-Amhr2 transcription dramatically increased Amhr2 promoter activity in OV3121 cells. These results indicate that lncRNA-Amhr2 plays a role in Amhr2 gene activation in ovarian granulosa cells by enhancing promoter activity, providing insight into Amhr2 gene regulation underlying the AMH signaling in the female reproductive system.
机译:抗Mullerian激素(AMH)对哺乳动物男性分化期间Mullerian管道的回归至关重要,并靶向卵巢颗粒细胞和成人睾丸睾丸细胞和Leydig细胞。 AMH的特异性效果通过其受体,II型受体(AMHR2)施加,但没有完全理解AMHR2基因特异性活化的机制。为了了解近端启动子是否足以进行AMHR2基因活化,我们产生通过500bp小鼠AMHR2基因启动子驱动的增强的绿色荧光蛋白(EGFP)基因的转基因小鼠。然而,没有成熟的10线表达适当的EGFP表达,表明500-BP启动子对于AMHR2基因活化不足。作为调节元件,我们发现从卵巢颗粒细胞和睾丸型血液细胞中从AMHR2基因的上游转录的长度非编码RNA LNCRNA-AMHR 2。在原颗粒细胞中,LNCRNA-AMHR2的敲低导致AMHR2 Messnger RNA水平降低,瞬态报告基因测定显示LNCRNA-AMHR2活化增加的AMHR2启动子活性。该活性与衍生自小鼠颗粒细胞的稳定转染的OV3121细胞中的LNCRNA-AMHR2转录相关。此外,通过TET-on系统,LNCRNA-AMHR2转录的诱导显着增加了OV3121细胞中的AMHR2启动子活性。这些结果表明,通过增强启动子活性,LNCRNA-AMHR2在卵巢颗粒细胞中发挥AMHR2基因活化的作用,在雌性生殖系统中的AMH信号传导下的AMHR2基因调节中,提供了洞察力的洞察力。

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