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脊椎动物中新型下丘脑RFamide神经肽R-RFa和26RFa的结构与功能

Structure and functions of the novel hypothalamic RFamide neuropeptides R-RFa and 26RFa in vertebrates.

作者信息

Chartrel Nicolas, Bruzzone Federica, Leprince Jérôme, Tollemer Hélène, Anouar Youssef, Do-Régo Jean-Claude, Ségalas-Milazzo Isabelle, Guilhaudis Laure, Cosette Pascal, Jouenne Thierry, Simonnet Guy, Vallarino Mauro, Beauvillain Jean-Claude, Costentin Jean, Vaudry Hubert

机构信息

European Institute for Peptide Research (IFRMP23), Laboratory of Cellular and Molecular Neuroendocrinology, INSERM U 413, University of Rouen, 76821 Mont-Saint-Aignan, France.

出版信息

Peptides. 2006 May;27(5):1110-20. doi: 10.1016/j.peptides.2005.06.035. Epub 2006 Mar 6.

Abstract

A number of RFamide peptides have been characterized in invertebrate species and these peptides have been found to exert a broad spectrum of biological activities. In contrast, in vertebrates, our knowledge on RFamide peptides is far more limited and only a few members of the RFamide peptide family have been identified in various vertebrate classes during the last years. The present review focuses on two novel RFamide peptides, Rana RFamide (R-RFa) and 26RFa, that have been recently isolated from the amphibian brain. R-RFa shares the C-terminal LPLRFamide motif with other RFamide peptides previously identified in mammals, birds and fish. The distribution of R-RFa in the frog brain exhibits strong similarities with those of other LPLRFamide peptides, notably in the periventricular region of the hypothalamus. There is also evidence that the physiological functions of R-RFa and other LPLRFamide peptides have been conserved from fish to mammals; in particular, all these peptides appear to be involved in the control of pituitary hormone secretion. 26RFa does not exhibit any significant structural identity with other RFamide peptides and this peptide is the only member of the family that possesses an FRFamide motif at its C-terminus. The strong conservation of the primary structure of 26RFa from amphibians to mammals suggests that this RFamide peptide is involved in important biological functions in vertebrates. As for several other RFamide peptides, 26RFa-containing neurons are present in the hypothalamus, notably in two nuclei involved in the control of feeding behavior. Indeed, 26RFa is a potent stimulator of appetite in mammals. Concurrently, recent data suggest that 26RFa exerts various neuroendocrine regulatory activities at the pituitary and adrenal level.

摘要

在无脊椎动物物种中已鉴定出多种RFamide肽,这些肽具有广泛的生物活性。相比之下,在脊椎动物中,我们对RFamide肽的了解要有限得多,在过去几年中,仅在不同脊椎动物类别中鉴定出了RFamide肽家族的少数成员。本综述聚焦于最近从两栖动物大脑中分离出的两种新型RFamide肽,即蛙RFamide(R-RFa)和26RFa。R-RFa与先前在哺乳动物、鸟类和鱼类中鉴定出的其他RFamide肽共享C端LPLRFamide基序。R-RFa在蛙脑中的分布与其他LPLRFamide肽的分布有很强的相似性,特别是在下丘脑的室周区域。也有证据表明,从鱼类到哺乳动物,R-RFa和其他LPLRFamide肽的生理功能是保守的;特别是,所有这些肽似乎都参与了垂体激素分泌的控制。26RFa与其他RFamide肽没有任何明显的结构一致性,并且该肽是该家族中唯一在其C端具有FRFamide基序的成员。从两栖动物到哺乳动物,26RFa一级结构的高度保守表明这种RFamide肽在脊椎动物中参与重要的生物学功能。与其他几种RFamide肽一样,含有26RFa的神经元存在于下丘脑,特别是在参与控制摄食行为的两个核中。事实上,26RFa是哺乳动物食欲的有效刺激剂。同时,最近的数据表明,26RFa在垂体和肾上腺水平发挥各种神经内分泌调节活动。

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