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Molecular Mechanisms of Gonadotropin-Inhibitory Hormone (GnIH) Actions in Target Cells and Regulation of GnIH Expression

机译:靶细胞中促性腺激素抑制激素(GnIH)作用的分子机理及对GnIH表达的调节

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摘要

Since gonadotropin-inhibitory hormone (GnIH) was discovered in 2000 as the first hypothalamic neuropeptide that actively inhibits gonadotropin release, researches conducted for the last 18 years have demonstrated that GnIH acts as a pronounced negative regulator of reproduction. Inhibitory effect of GnIH on reproduction is mainly accomplished at hypothalamic-pituitary levels; gonadotropin-releasing hormone (GnRH) neurons and gonadotropes are major targets of GnIH action based on the morphological interaction with GnIH neuronal fibers and the distribution of GnIH receptor. Here, we review molecular studies mainly focusing on the signal transduction pathway of GnIH in target cells, GnRH neurons, and gonadotropes. The use of well-defined cellular model systems allows the mechanistic study of signaling pathway occurring in target cells by demonstrating the direct cause-and-effect relationship. The insights gained through studying molecular mechanism of GnIH action contribute to deeper understanding of the mechanism of how GnIH communicates with other neuronal signaling systems to control our reproductive function. Reproductive axis closely interacts with other endocrine systems, thus GnIH expression levels would be changed by adrenal and thyroid status. We also briefly review molecular studies investigating the regulatory mechanisms of GnIH expression to understand the role of GnIH as a mediator between adrenal, thyroid and gonadal axes.
机译:自从2000年发现促性腺激素抑制激素(GnIH)作为第一个主动抑制促性腺激素释放的下丘脑神经肽以来,过去18年的研究表明,GnIH充当着明显的生殖负调节剂。 GnIH对生殖的抑制作用主要在下丘脑-垂体水平完成。基于与GnIH神经元纤维的形态相互作用和GnIH受体的分布,促性腺激素释放激素(GnRH)神经元和促性腺激素是GnIH作用的主要目标。在这里,我们审查分子研究,主要侧重于靶细胞,GnRH神经元和促性腺激素中GnIH的信号转导途径。明确定义的细胞模型系统的使用允许通过证明直接的因果关系来研究靶细胞中发生的信号传导途径。通过研究GnIH作用的分子机制获得的见解有助于更深入地了解GnIH如何与其他神经元信号系统通讯以控制我们的生殖功能的机制。生殖轴与其他内分泌系统密切相互作用,因此,GnIH表达水平会因肾上腺和甲状腺状态而改变。我们还简要回顾了研究GnIH表达调控机制的分子研究,以了解GnIH作为肾上腺,甲状腺和性腺轴之间的介质的作用。

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