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Dissecting the Roles of Gonadotropin-Inhibitory Hormone in Mammals: Studies Using Pharmacological Tools and Genetically Modified Mouse Models

机译:剖析促性腺激素抑制激素在哺乳动物中的作用:使用药理学工具和基因修饰的小鼠模型的研究

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摘要

Reproduction is essential for perpetuation of the species and, hence, is controlled by a sophisticated network of regulatory factors of central and peripheral origin that integrate at the hypothalamic–pituitary–gonadal (HPG) axis. Among the central regulators of reproduction, kisspeptins, as major stimulatory drivers of gonadotropin-releasing hormone (GnRH) neurosecretion, have drawn considerable interest in the last decade. However, the dynamic, if not cyclic (in the female), nature of reproductive function and the potency of kisspeptins and other stimulatory signals of the HPG axis make tenable the existence of counterbalance inhibitory mechanisms, which may keep stimulation at check and would allow adaptation of reproductive maturation and function to different endogenous and environmental conditions. In this context, discovery of the gonadotropin-inhibitory hormone (GnIH) in birds, and its mammalian homolog, RFRP, opened up the exciting possibility that this inhibitory signal might operate centrally to suppress, directly or indirectly, GnRH/gonadotropin secretion, thus reciprocally cooperating with other stimulatory inputs in the dynamic regulation of the reproductive hypothalamic–pituitary unit. After more than 15 years of active research, the role of GnIH/RFRP in the control of the HPG axis has been documented in different species. Yet, important aspects of the physiology of this system, especially regarding its relative importance and actual roles in the control of key facets of reproductive function, remain controversial. In the present work, we aim to provide a critical review of recent developments in this area, with special attention to studies in rodent models, using pharmacological tools and functional genomics. In doing so, we intend to endow the reader with an updated view of what is known (and what is not known) about the physiological role of GnIH/RFRP signaling in the control of mammalian reproduction.
机译:繁殖对于维持该物种至关重要,因此受到中央和周边起源的复杂调节因子网络的控制,这些因子整合在下丘脑-垂体-性腺(HPG)轴上。在生殖的中央调节器中,作为促性腺激素释放激素(GnRH)神经分泌的主要刺激驱动力的吻肽素在过去十年中引起了极大的兴趣。然而,动态的(如果不是周期性的)(在女性中)生殖功能的性质以及亲吻肽素和HPG轴其他刺激信号的效价使平衡抑制机制的存在变得成立,这可以抑制刺激并允许适应生殖成熟度和功能对不同内生和环境条件的影响。在这种情况下,在鸟类中发现促性腺激素抑制激素(GnIH)及其哺乳动物同源物RFRP,开启了令人激动的可能性,即这种抑制信号可能直接或间接地抑制GnRH /促性腺激素的分泌,从而相互抑制在生殖下丘脑-垂体单元的动态调节中与其他刺激性输入配合。经过超过15年的积极研究,GnIH / RFRP在HPG轴控制中的作用已在不同物种中得到了证明。然而,该系统生理学的重要方面,尤其是在控制生殖功能关键方面的相对重要性和实际作用方面,仍存在争议。在当前的工作中,我们旨在对这一领域的最新进展进行批判性审查,特别关注使用药理学工具和功能基因组学对啮齿动物模型进行的研究。通过这样做,我们打算让读者了解有关GnIH / RFRP信号在控制哺乳动物繁殖中的生理作用的已知(和未知)的最新观点。

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