Hana Sam, Lange Angela B
Department of Biology, University of Toronto Mississauga, Mississauga, ON, Canada.
Front Physiol. 2017 Sep 26;8:744. doi: 10.3389/fphys.2017.00744. eCollection 2017.
Octopamine and tyramine, both biogenic amines, are bioactive chemicals important in diverse physiological processes in invertebrates. In insects, octopamine and tyramine operate analogously to epinephrine and norepinephrine in the vertebrates. Octopamine and tyramine bind to G-protein coupled receptors (GPCRs) leading to changes in second messenger levels and thereby modifying the function in target tissues and insect behavior. In this paper, we report the cDNA sequences of two GPCRs, RhoprOctβ2-R, and RhoprTyr1-R, have been cloned and functionally characterized from . Octopamine and tyramine each activate RhoprOctβ2-R and RhoprTyr1-R in a dose-dependent manner. Octopamine is one order of magnitude more potent than tyramine in activating RhoprOctβ2-R. Tyramine is two orders of magnitude more potent than octopamine in activating RhoprTyr1-R. Phentolamine and gramine significantly antagonize RhoprOctβ2-R, whereas yohimbine and phenoxybenzamine are effective blockers of RhoprTyr1-R. The transcripts of both receptors are enriched in the central nervous system (CNS) and are expressed throughout the adult female reproductive system. It has been shown in other insects that Octβ2-R is essential for processes such as ovulation and fertilization. We previously reported that octopamine and tyramine modulate oviducts and bursa contractions in . Our data confirm the importance of octopamine and tyramine signaling in the reproductive system of .
章鱼胺和酪胺都是生物胺,是无脊椎动物多种生理过程中重要的生物活性化学物质。在昆虫中,章鱼胺和酪胺的作用类似于脊椎动物中的肾上腺素和去甲肾上腺素。章鱼胺和酪胺与G蛋白偶联受体(GPCRs)结合,导致第二信使水平发生变化,从而改变靶组织的功能和昆虫行为。在本文中,我们报告了从克隆并对其功能进行了表征的两个GPCRs,即RhoprOctβ2-R和RhoprTyr1-R的cDNA序列。章鱼胺和酪胺均以剂量依赖性方式激活RhoprOctβ2-R和RhoprTyr1-R。在激活RhoprOctβ2-R方面,章鱼胺的效力比酪胺高一个数量级。在激活RhoprTyr1-R方面,酪胺的效力比章鱼胺高两个数量级。酚妥拉明和禾胺可显著拮抗RhoprOctβ2-R,而育亨宾和酚苄明是RhoprTyr1-R的有效阻滞剂。两种受体的转录本在中枢神经系统(CNS)中富集,并在成年雌性生殖系统中均有表达。在其他昆虫中已表明,Octβ2-R对排卵和受精等过程至关重要。我们之前报道过章鱼胺和酪胺可调节输卵管和囊的收缩。我们的数据证实了章鱼胺和酪胺信号在生殖系统中的重要性。