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下丘脑甘丙肽系统的分布、调节及作用:对一个多效性肽家族的重新关注

Distribution, regulation and role of hypothalamic galanin systems: renewed interest in a pleiotropic peptide family.

作者信息

Gundlach A L, Burazin T C, Larm J A

机构信息

The University of Melbourne, Department of Medicine, Austin, Victoria, Australia.

出版信息

Clin Exp Pharmacol Physiol. 2001 Jan-Feb;28(1-2):100-5. doi: 10.1046/j.1440-1681.2001.03411.x.

Abstract
  1. Galanin peptide and galanin receptor-binding sites are known to be widely distributed within the central nervous system, particularly in the hypothalamus in the preoptic area, the paraventricular (PVN) and supraoptic (SON) nuclei and the arcuate nucleus/median eminence. 2. The present brief review focuses on some recent studies of the regional and cellular localization of mRNA encoding galanin and two galanin receptor subtypes (GalR1 and GalR2) in the hypothalamus, regulation of galanin and/or galanin receptor expression in various nuclei by physiological stimuli, electrophysiological effects of galanin on hypothalamic neurons and the isolation and cloning of galanin-like peptide (GALP), a putative endogenous ligand for GalR2. 3. In situ hybridization studies in rat brain have demonstrated an abundance of GalR1 mRNA in SON, magnocellular (m) and parvocellular (p) PVN and dorsomedial, ventromedial and arcuate nuclei. In contrast, GalR2 mRNA is enriched in pPVN, but not mPVN, and is not detected in SON. In addition, GalR2 mRNA is present in the dorsomedial nucleus and is enriched in the arcuate nucleus compared with GalR1 transcripts, with numerous labelled cells in all subdivisions. 4. Neurons of the SON and PVN contain vasopressin and/or oxytocin, along with several other peptides, and the production and release of these hormones and peptides are modulated by various physiological stimuli. In relation to galanin systems, GalR1 and galanin expression is increased in magnocellular neurons by salt loading and is downregulated by lactation, consistent with an increased inhibition by galanin of vasopressin release following osmotic stimulation and a decreased inhibition of oxytocin release during lactation. 5. Powerful inhibitory effects of galanin on the electrical (and secretory) activity of magnocellular neurons and complex presynaptic actions of galanin on the synaptic release of glutamate in the arcuate nucleus in vitro suggest an active role for multiple galanin receptor subtypes in the regulation of these hypothalamic systems in vivo. 6. The recent isolation of a peptide from porcine hypothalamus (GALP-1-60) that is structurally related to galanin and appears to be selective for GalR2 over GalR1 and the subsequent cloning of GALP cDNA from pig, rat and humans should allow studies to help reveal the physiological role played by galanin receptor subtypes (especially GalR2) and their multiple ligands in the hypothalamus and other brain areas.
摘要
  1. 已知甘丙肽及其受体结合位点广泛分布于中枢神经系统,尤其是视前区的下丘脑、室旁核(PVN)、视上核(SON)以及弓状核/正中隆起。2. 本简要综述聚焦于近期一些关于下丘脑内编码甘丙肽及两种甘丙肽受体亚型(GalR1和GalR2)的mRNA的区域和细胞定位研究,各种生理刺激对下丘脑各核团中甘丙肽和/或甘丙肽受体表达的调节,甘丙肽对下丘脑神经元的电生理效应,以及甘丙肽样肽(GALP)(一种假定的GalR2内源性配体)的分离与克隆。3. 大鼠脑内的原位杂交研究表明,SON、大细胞性(m)和小细胞性(p)PVN以及背内侧、腹内侧和弓状核中存在大量GalR1 mRNA。相比之下,GalR2 mRNA在pPVN中富集,但在mPVN中不富集,在SON中未检测到。此外,GalR2 mRNA存在于背内侧核中,与GalR1转录本相比,在弓状核中富集,所有亚区均有大量标记细胞。4. SON和PVN的神经元含有血管加压素和/或催产素以及其他几种肽,这些激素和肽的产生和释放受各种生理刺激调节。关于甘丙肽系统,盐负荷可使大细胞神经元中GalR1和甘丙肽表达增加,而泌乳可使其下调,这与渗透刺激后甘丙肽对血管加压素释放的抑制作用增强以及泌乳期间对催产素释放的抑制作用减弱相一致。5. 甘丙肽对大细胞神经元的电(和分泌)活动具有强大的抑制作用,且在体外对弓状核中谷氨酸的突触释放具有复杂的突触前作用,这表明多种甘丙肽受体亚型在体内对这些下丘脑系统的调节中发挥着积极作用。6. 最近从猪下丘脑分离出一种与甘丙肽结构相关的肽(GALP - 1 - 60),它似乎对GalR2的选择性高于GalR1,随后从猪、大鼠和人类中克隆出GALP cDNA,这将有助于揭示甘丙肽受体亚型(尤其是GalR2)及其多种配体在下丘脑和其他脑区所起的生理作用。

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