Finetti Luca, Roeder Thomas, Calò Girolamo, Bernacchia Giovanni
Department of Life Science and Biotechnologies, University of Ferrara, via Borsari 46, 44121 Ferrara, Italy.
Laboratory of Molecular Physiology, Department of Zoology, Kiel University, Christian-Albrechts-Platz 4, 24118 Kiel, Germany.
Insects. 2021 Apr 1;12(4):315. doi: 10.3390/insects12040315.
Tyramine is a neuroactive compound that acts as neurotransmitter, neuromodulator, and neurohormone in insects. Three G protein-coupled receptors, TAR1-3, are responsible for mediating the intracellular pathway in the complex tyraminergic network. TAR1, the prominent player in this system, was initially classified as an octopamine receptor which can also be activated by tyramine, while it later appeared to be a true tyramine receptor. Even though TAR1 is currently considered as a well-defined tyramine receptor and several insect TAR1s have been characterized, a defined nomenclature is still inconsistent. In the last years, our knowledge on the structural, biochemical, and functional properties of TAR1 has substantially increased. This review summarizes the available information on TAR1 from different insect species in terms of basic structure, its regulation and signal transduction mechanisms, and its distribution and functions in the brain and the periphery. A special focus is given to the TAR1-mediated intracellular signaling pathways as well as to their physiological role in regulating behavioral traits. Therefore, this work aims to correlate, for the first time, the physiological relevance of TAR1 functions with the tyraminergic system in insects. In addition, pharmacological studies have shed light on compounds with insecticidal properties having TAR1 as a target and on the emerging trend in the development of novel strategies for pest control.
酪胺是一种神经活性化合物,在昆虫体内作为神经递质、神经调质和神经激素发挥作用。三种G蛋白偶联受体TAR1 - 3负责介导复杂的酪胺能网络中的细胞内信号通路。TAR1是该系统中的主要参与者,最初被归类为章鱼胺受体,也可被酪胺激活,后来发现它是一种真正的酪胺受体。尽管目前TAR1被认为是一种明确的酪胺受体,并且已经对几种昆虫的TAR1进行了表征,但定义的命名法仍然不一致。在过去几年中,我们对TAR1的结构、生化和功能特性的了解有了显著增加。本综述从基本结构、其调节和信号转导机制以及在大脑和外周的分布和功能等方面总结了来自不同昆虫物种的TAR1的现有信息。特别关注TAR1介导的细胞内信号通路及其在调节行为特征中的生理作用。因此,这项工作旨在首次将TAR1功能的生理相关性与昆虫的酪胺能系统联系起来。此外,药理学研究揭示了以TAR1为靶点的具有杀虫特性的化合物,以及害虫控制新策略开发的新趋势。