Chartrel N, Braun B, Collin F, Pierreuse B, Coulouarn Y, Tostivint H, Jeandel L, Trabucchi M, Vieau D, Lihrmann I, Tonon M C, Anouar Y, Conlon J M, Vaudry H
Institut Fédératif de Recherches Multidisciplinaires sur les Peptides (IFRMP n(o)23), INSERM U413, UA CNRS, Université de Rouen, Mont-Saint-Aignan, France.
C R Seances Soc Biol Fil. 1998;192(4):619-38.
Neuropeptides play a crucial role in cell communication as neurotransmitters, neuromodulators or neurohormones, and are involved in a number of biological activities including neuroendocrine regulations, control of neurovegetative functions, trophic effects and modulation of the immune response. The number of neuropeptides that have been fully characterized so far is rather limited, as compared to the number of precursor proteins that are actually expressed in nerve cells. Owing to the development of powerful analytical and structural identification methods, and the rapid advance in molecular biology techniques, a number of novel neuropeptides have been characterized during the last decade, in both vertebrates and invertebrates. The aim of the present review is to provide a comprehensive coverage of the different approaches which are currently used to identify novel neuropeptides.
神经肽作为神经递质、神经调质或神经激素在细胞通讯中发挥着关键作用,并参与多种生物活性,包括神经内分泌调节、神经植物性功能控制、营养作用以及免疫反应调节。与神经细胞中实际表达的前体蛋白数量相比,目前已被完全表征的神经肽数量相当有限。由于强大的分析和结构鉴定方法的发展以及分子生物学技术的迅速进步,在过去十年中,脊椎动物和无脊椎动物中都有许多新型神经肽被表征出来。本综述的目的是全面涵盖目前用于鉴定新型神经肽的不同方法。