Muratspahić Edin, Monjon Emilie, Duerrauer Leopold, Rogers Stephen M, Cullen Darron A, Vanden Broeck Jozef, Gruber Christian W
Center for Physiology and Pharmacology, Medical University of Vienna, Vienna, Austria.
Molecular Developmental Physiology and Signal Transduction Group, Zoological Institute, KU Leuven, Leuven, Belgium.
Vitam Horm. 2020;113:29-53. doi: 10.1016/bs.vh.2019.08.011. Epub 2019 Oct 18.
The origin of the oxytocin (OT)/vasopressin (VP) signaling system is thought to date back more than 600million years. OT/VP-like peptides have been identified in numerous invertebrate phyla including molluscs, annelids, nematodes and insects. However, to date we only have a limited understanding of the biological role(s) of this GPCR-mediated signaling system in insects. This chapter presents the current knowledge of OT/VP-like neuropeptide signaling in insects by providing a brief overview of insect OT/VP-like neuropeptides, their genetic and structural commonalities, and their experimentally tested and proposed functions. Despite their widespread occurrence across insect orders these peptides (and their endogenous receptors) appear to be absent in common insect model species, such as flies and bees. We therefore explain the known functionalities of this signaling system in three different insect model systems: beetles, locusts, and ants. Additionally, we review the phylogenetic distribution of the OT/VP signaling system in arthropods as obtained from extensive genome/transcriptome mining. Finally, we discuss the unique challenges in the development of selective OT/VP ligands for human receptors and share our perspective on the possible application of insect- and other non-mammalian-derived OT/VP-like peptide ligands in pharmacology.
催产素(OT)/加压素(VP)信号系统的起源被认为可追溯到6亿多年前。在包括软体动物、环节动物、线虫和昆虫在内的众多无脊椎动物门中都已鉴定出OT/VP样肽。然而,迄今为止,我们对昆虫中这种GPCR介导的信号系统的生物学作用了解有限。本章通过简要概述昆虫OT/VP样神经肽、它们的遗传和结构共性以及它们经过实验验证和推测的功能,介绍了昆虫中OT/VP样神经肽信号的现有知识。尽管这些肽(及其内源性受体)在昆虫各目中广泛存在,但在常见的昆虫模型物种,如苍蝇和蜜蜂中似乎并不存在。因此,我们在三种不同的昆虫模型系统中解释了该信号系统的已知功能:甲虫、蝗虫和蚂蚁。此外,我们回顾了通过广泛的基因组/转录组挖掘获得的节肢动物中OT/VP信号系统的系统发育分布。最后,我们讨论了开发用于人类受体的选择性OT/VP配体所面临的独特挑战,并分享我们对昆虫和其他非哺乳动物来源的OT/VP样肽配体在药理学中可能应用的看法。