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昆虫神经肽和肽类激素研究简史

A brief history of insect neuropeptide and peptide hormone research.

作者信息

Nässel Dick R

机构信息

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

出版信息

Cell Tissue Res. 2025 Feb;399(2):129-159. doi: 10.1007/s00441-024-03936-0. Epub 2024 Dec 10.

Abstract

This review briefly summarizes 50 years of research on insect neuropeptide and peptide hormone (collectively abbreviated NPH) signaling, starting with the sequencing of proctolin in 1975. The first 25 years, before the sequencing of the Drosophila genome, were characterized by efforts to identify novel NPHs by biochemical means, mapping of their distribution in neurons, neurosecretory cells, and endocrine cells of the intestine. Functional studies of NPHs were predominantly dealing with hormonal aspects of peptides and many employed ex vivo assays. With the annotation of the Drosophila genome, and more specifically of the NPHs and their receptors in Drosophila and other insects, a new era followed. This started with matching of NPH ligands to orphan receptors, and studies to localize NPHs with improved detection methods. Important advances were made with introduction of a rich repertoire of innovative molecular genetic approaches to localize and interfere with expression or function of NPHs and their receptors. These methods enabled cell- or circuit-specific interference with NPH signaling for in vivo assays to determine roles in behavior and physiology, imaging of neuronal activity, and analysis of connectivity in peptidergic circuits. Recent years have seen a dramatic increase in reports on the multiple functions of NPHs in development, physiology and behavior. Importantly, we can now appreciate the pleiotropic functions of NPHs, as well as the functional peptidergic "networks" where state dependent NPH signaling ensures behavioral plasticity and systemic homeostasis.

摘要

本综述简要总结了50年来关于昆虫神经肽和肽激素(统称为NPH)信号传导的研究,始于1975年对促肠肽的测序。在果蝇基因组测序之前的前25年,其特点是通过生化手段鉴定新型NPH,绘制它们在神经元、神经分泌细胞和肠道内分泌细胞中的分布图谱。NPH的功能研究主要涉及肽的激素方面,许多研究采用离体试验。随着果蝇基因组的注释,更具体地说是果蝇和其他昆虫中NPH及其受体的注释,一个新时代随之而来。这始于将NPH配体与孤儿受体匹配,并采用改进的检测方法对NPH进行定位研究。随着引入丰富多样的创新分子遗传学方法来定位和干扰NPH及其受体的表达或功能,取得了重要进展。这些方法能够在体内试验中对NPH信号进行细胞或回路特异性干扰,以确定其在行为和生理中的作用、神经元活动成像以及肽能回路中的连接性分析。近年来,关于NPH在发育、生理和行为中的多种功能的报道急剧增加。重要的是,我们现在能够认识到NPH的多效性功能,以及功能性肽能“网络”,其中状态依赖性NPH信号确保行为可塑性和全身稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/328b/11787221/0f1eb0bee2ac/441_2024_3936_Fig1_HTML.jpg

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