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谷氨酸和一氧化氮在生殖神经内分泌系统中的作用。

The role of glutamate and nitric oxide in the reproductive neuroendocrine system.

作者信息

Dhandapani K M, Brann D W

机构信息

Department of Physiology and Endocrinology, School of Medicine, Medical College of Georgia, Augusta 30912, USA.

出版信息

Biochem Cell Biol. 2000;78(3):165-79.

Abstract

The preovulatory surge of gonadotropin releasing hormone (GnRH) is essential for mammalian reproduction. Recent work has implicated the neurotransmitters glutamate and nitric oxide as having a key role in this process. Large concentrations of glutamate are found in several hypothalamic nuclei known to be important for GnRH release and glutamate receptors are also located in these key hypothalamic nuclei. Administration of glutamate agonists stimulate GnRH and LH release, while glutamate receptor antagonists attenuate the steroid-induced and preovulatory LH surge. Glutamate has also been implicated in the critical processes of puberty, hormone pulsatility, and sexual behavior. Glutamate is believed to elicit many of these effects by activating the release of the gaseous neurotransmitter, nitric oxide (NO). NO potently stimulates GnRH by activating a heme containing enzyme, guanylate cyclase, which in turn leads to increased production of cGMP and GnRH release. Recent work has focused on identifying anchoring and (or) clustering proteins that target glutamate receptors to the synapse and couple the glutamate-NO neurotransmission system. The present review will discuss these new findings, as well as the role of glutamate and nitric oxide in important mammalian reproductive events, with a focus on the hypothalamic control of preovulatory GnRH release.

摘要

促性腺激素释放激素(GnRH)的排卵前激增对哺乳动物繁殖至关重要。最近的研究表明,神经递质谷氨酸和一氧化氮在这一过程中起关键作用。在已知对GnRH释放很重要的几个下丘脑核中发现了高浓度的谷氨酸,并且谷氨酸受体也位于这些关键的下丘脑核中。给予谷氨酸激动剂可刺激GnRH和LH释放,而谷氨酸受体拮抗剂可减弱类固醇诱导的和排卵前的LH激增。谷氨酸还与青春期、激素脉冲性和性行为的关键过程有关。据信谷氨酸通过激活气态神经递质一氧化氮(NO)的释放来引发许多这些效应。NO通过激活一种含血红素的酶——鸟苷酸环化酶来有效刺激GnRH,这进而导致cGMP产量增加和GnRH释放。最近的研究集中在鉴定将谷氨酸受体靶向突触并耦合谷氨酸-NO神经传递系统的锚定和(或)聚集蛋白。本综述将讨论这些新发现,以及谷氨酸和一氧化氮在重要的哺乳动物生殖事件中的作用,重点是下丘脑对排卵前GnRH释放的控制。

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