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Association of Gnrhr mRNA With the Stem Cell Determinant Musashi: A Mechanism for Leptin-Mediated Modulation of GnRHR Expression

机译:Gnrhr mRNA与干细胞决定因素武藏的关联:瘦素介导的GnRHR表达调节机制。

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摘要

The cyclic expression of pituitary gonadotropin-releasing hormone receptors (GnRHRs) may be an important checkpoint for leptin regulatory signals. Gonadotrope Lepr-null mice have reduced GnRHR levels, suggesting these receptors may be leptin targets. To determine if leptin stimulated GnRHR directly, primary pituitary cultures or pieces were exposed to 1 to 100 nM leptin. Leptin increased GnRHR protein levels and the percentages of gonadotropes that bound biotinylated analogs of gonadotropin-releasing hormone (bio-GnRH) but had no effect on Gnrhr messenger RNA (mRNA). An in silico analysis revealed three consensus Musashi (MSI) binding elements (MBEs) for this translational control protein in the 3′ untranslated region (UTR) of Gnrhr mRNA. Several experiments determined that these Gnrhr mRNA MBE were active: (1) RNA electrophoretic mobility shift assay analyses showed that MSI1 specifically bound Gnrhr mRNA 3′-UTR; () RNA immunoprecipitation of pituitary fractions with MSI1 antibody pulled down a complex enriched in endogenous MSI protein and endogenous Gnrhr mRNA; and (3) fluorescence reporter assays showed that MSI1 repressed translation of the reporter coupled to the Gnrhr 3′-UTR. In vitro, leptin stimulation of pituitary pieces reduced Msi1 mRNA in female pituitaries, and leptin stimulation of pituitary cultures reduced MSI1 proteins selectively in gonadotropes identified by binding to bio-GnRH. These findings show that leptin’s direct stimulatory actions on gonadotrope GnRHR correlate with a direct inhibition of expression of the posttranscriptional regulator MSI1. We also show MSI1 interaction with the 3′-UTR of Gnrhr mRNA. These findings now open the door to future studies of leptin-modulated posttranscriptional pathways.
机译:垂体促性腺激素释放激素受体(GnRHRs)的循环表达可能是瘦素调节信号的重要检查点。 Gonadotrope Lepr-null小鼠的GnRHR水平降低,表明这些受体可能是瘦素的靶标。为了确定瘦蛋白是否直接刺激GnRHR,将垂体原代培养物或碎片暴露于1至100 nM瘦蛋白中。瘦素增加了GnRHR蛋白水平和与促性腺激素释放激素(bio-GnRH)的生物素化类似物结合的促性腺激素的百分比,但对Gnrhr信使RNA(mRNA)没有影响。电脑分析显示,该翻译控制蛋白在Gnrhr mRNA的3'非翻译区(UTR)中具有三个共有的武藏(MSI)结合元件(MBE)。几个实验确定了这些Gnrhr mRNA MBE是有活性的:(1)RNA电泳迁移率漂移分析表明MSI1特异性结合Gnrhr mRNA 3'-UTR。 ()用MSI1抗体对垂体部分进行RNA免疫沉淀,提取了富含内源性MSI蛋白和内源性Gnrhr mRNA的复合物; (3)荧光报告基因分析表明,MSI1抑制了与Gnrhr 3'-UTR偶联的报告基因的翻译。在体外,对垂体的瘦素刺激可降低雌性垂体中的Msi1 mRNA,而对垂体培养物的瘦素刺激可通过与生物GnRH结合而鉴定出的促性腺激素选择性降低MSI1蛋白。这些发现表明,瘦素对促性腺激素GnRHR的直接刺激作用与转录后调节因子MSI1的表达的直接抑制有关。我们还显示了MSI1与Gnrhr mRNA的3'-UTR相互作用。这些发现现在为未来研究瘦素调节的转录后途径打开了大门。

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