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首页> 外文期刊>Molecular and Cellular Endocrinology >MicroRNA miR-513a-3p acts as a co-regulator of luteinizing hormone/chorionic gonadotropin receptor gene expression in human granulosa cells
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MicroRNA miR-513a-3p acts as a co-regulator of luteinizing hormone/chorionic gonadotropin receptor gene expression in human granulosa cells

机译:MicroRNA miR-513a-3p充当人颗粒细胞中促黄体生成激素/绒毛膜促性腺激素受体基因表达的共调节因子

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The luteinizing hormone/chorionic gonadotropin receptor (LHCGR) is essential for normal male and female reproductive processes. The spatial and temporal LHCGR gene expression is controlled by a complex system of regulatory mechanisms which are crucial for normal physiological function, especially during the female cycle. In this study, we aimed to elucidate whether microRNAs are involved in this network and play a role in regulating LHCGR expression. Computational analysis predicted that miR-513a-3p interacts with the LHCGR mRNA via three binding sites located in the 3'UTR region, enabling a synergistic action. Moreover, using a luciferase-based reporter assay we found that miR-513a-3p targets the LHCGR, resulting in a significant down-regulation of its expression. In human primary granulosa cell cultures we detected a dynamic, inversely associated expression pattern of miR-513a-3p and the LHCGR. In addition, transfection with miR-513a-3p or its specific inhibitor led to a down- or up-regulation at the LHCGR mRNA level, respectively. An increased amount of miR-513a-3p resulted in the down-regulation of the LHCGR mRNA, reflected by the attenuation of cAMP synthesis after hormonal stimulation. In conclusion, these data demonstrate that miR-513a-3p is involved in the control of the LHCGR expression by an inversely regulated mechanism at the post-transcriptional level and show for the first time that this kind of post-transcriptional process contributes to the multifaceted system of the human LHCGR regulation.
机译:黄体激素/绒毛膜促性腺激素受体(LHCGR)对于正常的男性和女性生殖过程至关重要。 LHCGR基因的时空表达受复杂的调节机制系统控制,这对正常的生理功能至关重要,尤其是在女性周期中。在这项研究中,我们旨在阐明microRNA是否参与该网络并在调节LHCGR表达中发挥作用。计算分析预测,miR-513a-3p通过位于3'UTR区域中的三个结合位点与LHCGR mRNA相互作用,从而实现协同作用。此外,使用基于荧光素酶的报告基因检测,我们发现miR-513a-3p靶向LHCGR,导致其表达的显着下调。在人类原代颗粒细胞培养物中,我们检测到了miR-513a-3p和LHCGR的动态,反向关联的表达模式。另外,用miR-513a-3p或其特异性抑制剂转染分别导致LHCGR mRNA水平下调或上调。 miR-513a-3p量的增加导致LHCGR mRNA的下调,这反映在激素刺激后cAMP合成的减弱。总之,这些数据表明,miR-513a-3p通过转录后水平的逆向调控机制参与了LHCGR表达的控制,并首次证明了这种转录后过程对多面体的贡献人类LHCGR监管体系。

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