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无脊椎动物短肽 F 和长肽 F 信号的比较综述:与脊椎动物神经肽 Y 信号有相似之处吗?

A comparative review of short and long neuropeptide F signaling in invertebrates: Any similarities to vertebrate neuropeptide Y signaling?

机构信息

Department of Zoology, Stockholm University, S-10691 Stockholm, Sweden.

出版信息

Peptides. 2011 Jun;32(6):1335-55. doi: 10.1016/j.peptides.2011.03.013. Epub 2011 Mar 31.

Abstract

Neuropeptides referred to as neuropeptide F (NPF) and short neuropeptide F (sNPF) have been identified in numerous invertebrate species. Sequence information has expanded tremendously due to recent genome sequencing and EST projects. Analysis of sequences of the peptides and prepropeptides strongly suggest that NPFs and sNPFs are not closely related. However, the NPFs are likely to be ancestrally related to the vertebrate family of neuropeptide Y (NPY) peptides. Peptide diversification may have been accomplished by different mechanisms in NPFs and sNPFs; in the former by gene duplications followed by diversification and in the sNPFs by internal duplications resulting in paracopies of peptides. We discuss the distribution and functions of NPFs and their receptors in several model invertebrates. Signaling with sNPF, however, has been investigated mainly in insects, especially in Drosophila. Both in invertebrates and in mammals NPF/NPY play roles in feeding, metabolism, reproduction and stress responses. Several other NPF functions have been studied in Drosophila that may be shared with mammals. In Drosophila sNPFs are widely distributed in numerous neurons of the CNS and some gut endocrines and their functions may be truly pleiotropic. Peptide distribution and experiments suggest roles of sNPF in feeding and growth, stress responses, modulation of locomotion and olfactory inputs, hormone release, as well as learning and memory. Available data indicate that NPF and sNPF signaling systems are distinct and not likely to play redundant roles.

摘要

神经肽被称为神经肽 F(NPF)和短神经肽 F(sNPF),已在许多无脊椎动物物种中被发现。由于最近的基因组测序和 EST 项目,序列信息已经大大扩展。对肽和前肽的序列分析强烈表明 NPF 和 sNPF 没有密切的关系。然而,NPF 可能与脊椎动物家族的神经肽 Y(NPY)肽具有同源关系。肽的多样化可能是通过 NPF 和 sNPF 中的不同机制实现的;前者通过基因复制,然后多样化,而 sNPF 则通过内部重复导致肽的副拷贝。我们讨论了 NPF 及其受体在几种模式无脊椎动物中的分布和功能。然而,sNPF 的信号转导主要在昆虫中进行了研究,特别是在果蝇中。在无脊椎动物和哺乳动物中,NPF/NPY 都在摄食、代谢、繁殖和应激反应中发挥作用。在果蝇中,已经研究了 NPF 的其他一些功能,这些功能可能与哺乳动物共享。sNPF 在 CNS 的许多神经元和一些肠道内分泌细胞中广泛分布,其功能可能真正具有多效性。肽的分布和实验表明 sNPF 在摄食和生长、应激反应、运动和嗅觉输入的调节、激素释放以及学习和记忆中发挥作用。现有数据表明,NPF 和 sNPF 信号系统是不同的,不太可能发挥冗余作用。

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