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大脑中的甘丙肽样肽:对摄食、能量代谢及生殖的影响。

Galanin-like peptide in the brain: effects on feeding, energy metabolism and reproduction.

作者信息

Kageyama Haruaki, Takenoya Fumiko, Kita Tetsuro, Hori Tomoko, Guan Jian-Lian, Shioda Seiji

机构信息

First Department of Anatomy, Showa University School of Medicine, 1-5-8 Hatanodai, Shinagawa-ku, Tokyo 142-8555, Japan.

出版信息

Regul Pept. 2005 Mar 15;126(1-2):21-6. doi: 10.1016/j.regpep.2004.08.029.

Abstract

The hypothalamus plays an important role in the regulation of feeding behavior, energy metabolism and reproduction. A novel peptide containing 60 amino acid peptide and a non-amidated C-terminus is produced in the hypothalamic arcuate nucleus (ARC) and has been named galanin-like peptide (GALP) on the basis of a portion of this peptide being homologous with galanin. It acts in the central nervous system (CNS), where it is involved in the regulation of feeding behavior. GALP-producing neurons make neuronal networks with several feeding related peptide-producing neurons. Since GALP is involved in the control of food intake and energy balance, it is possible that it plays an important role in the development of obesity. Furthermore, GALP regulates plasma lateral hypothalamus (LH) levels via the activation of gonadotropin-releasing hormone (GnRH)-producing neurons, suggesting that GALP is active in the reproductive system. Thus, interesting findings on the roles of GALP have made across a number of physiological systems. This review will attempt to summarize the research carried out to date on these areas. Because GALP may be involved in feeding behavior, energy metabolism and reproduction, further studies on the morphology and function of GALP-containing neurons in the CNS should increase our understanding of the role of GALP in brain function.

摘要

下丘脑在进食行为、能量代谢及生殖调节中发挥着重要作用。一种由60个氨基酸组成且C末端无酰胺化的新型肽在下丘脑弓状核(ARC)中产生,因其部分肽段与甘丙肽同源,故而被命名为甘丙肽样肽(GALP)。它在中枢神经系统(CNS)中发挥作用,参与进食行为的调节。产生GALP的神经元与多种产生与进食相关肽的神经元形成神经网络。由于GALP参与食物摄入和能量平衡的控制,它可能在肥胖的发生发展中起重要作用。此外,GALP通过激活产生促性腺激素释放激素(GnRH)的神经元来调节血浆下丘脑外侧区(LH)水平,这表明GALP在生殖系统中具有活性。因此,关于GALP作用的有趣发现已在多个生理系统中出现。本综述将尝试总结迄今为止在这些领域开展的研究。鉴于GALP可能参与进食行为、能量代谢和生殖,进一步研究CNS中含GALP神经元的形态和功能应能增进我们对GALP在脑功能中作用的理解。

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