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Tyramine and octopamine: Antagonistic modulators of behavior and metabolism [Review]

机译:酪胺和章鱼胺:行为和代谢的拮抗调节剂[综述]

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摘要

The phenolamines tyramine and octopamine are decarboxylation products of the amino acid tyrosine. Although tyromine is the biological precursor of octopamine, both compounds are independent neurotransmitters, acting through various G-protein coupled receptors. Especially, octopomine modulates a plethora of behaviors, peripheral and sense organs. Both compounds are believed to be homologues of their vertebrate counterparts adrenaline and noradrenaline. They modulate behaviors and organs in a coordinated way, which allows the insects to respond to external stimuli with a fine tuned adequate response. As these two phenolamines are the only biogenic amines whose physiological significance is restricted to invertebrates, the attention of pharmacologists was focused on the corresponding receptors, which are still believed to represent promising targets for new insecticides. Recent progress made on all levels of octopamine/tyramine research enabled us to better understand the molecular events underlying the control of complex behaviors.
机译:酚胺酪胺和章鱼胺是氨基酸酪氨酸的脱羧产物。尽管酪氨酸是章鱼胺的生物前体,但这两种化合物都是独立的神经递质,通过各种G蛋白偶联受体起作用。尤其是,章鱼碱可调节多种行为,周围器官和感觉器官。据信这两种化合物都是其脊椎动物对应物肾上腺素和去甲肾上腺素的同源物。它们以协调的方式调节行为和器官,使昆虫能够以微调的适当响应来响应外部刺激。由于这两种酚胺是唯一的生理意义仅限于无脊椎动物的生物胺,因此药理学家的注意力集中在相应的受体上,这些受体仍被认为是新型杀虫剂的有希望的靶标。在所有级别的章鱼胺/酪胺研究方面的最新进展使我们能够更好地理解控制复杂行为的分子事件。

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