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生物胺神经传递在……中的调节与调控

Regulation and modulation of biogenic amine neurotransmission in and .

作者信息

Rosikon Katarzyna D, Bone Megan C, Lawal Hakeem O

机构信息

Neuroscience Program, Department of Biological Sciences, Delaware State University, Dover, DE, United States.

出版信息

Front Physiol. 2023 Feb 16;14:970405. doi: 10.3389/fphys.2023.970405. eCollection 2023.

Abstract

Neurotransmitters are crucial for the relay of signals between neurons and their target. Monoamine neurotransmitters dopamine (DA), serotonin (5-HT), and histamine are found in both invertebrates and mammals and are known to control key physiological aspects in health and disease. Others, such as octopamine (OA) and tyramine (TA), are abundant in invertebrates. TA is expressed in both and and plays important roles in the regulation of essential life functions in each organism. OA and TA are thought to act as the mammalian homologs of epinephrine and norepinephrine respectively, and when triggered, they act in response to the various stressors in the fight-or-flight response. 5-HT regulates a wide range of behaviors in including egg-laying, male mating, locomotion, and pharyngeal pumping. 5-HT acts predominantly through its receptors, of which various classes have been described in both flies and worms. The adult brain of is composed of approximately 80 serotonergic neurons, which are involved in modulation of circadian rhythm, feeding, aggression, and long-term memory formation. DA is a major monoamine neurotransmitter that mediates a variety of critical organismal functions and is essential for synaptic transmission in invertebrates as it is in mammals, in which it is also a precursor for the synthesis of adrenaline and noradrenaline. In and as in mammals, DA receptors play critical roles and are generally grouped into two classes, D1-like and D2-like based on their predicted coupling to downstream G proteins. uses histamine as a neurotransmitter in photoreceptors as well as a small number of neurons in the CNS. does not use histamine as a neurotransmitter. Here, we review the comprehensive set of known amine neurotransmitters found in invertebrates, and discuss their biological and modulatory functions using the vast literature on both and . We also suggest the potential interactions between aminergic neurotransmitters systems in the modulation of neurophysiological activity and behavior.

摘要

神经递质对于神经元与其靶标之间的信号传递至关重要。单胺类神经递质多巴胺(DA)、血清素(5-羟色胺,5-HT)和组胺在无脊椎动物和哺乳动物中均有发现,并且已知它们在健康和疾病状态下控制着关键的生理方面。其他一些神经递质,如章鱼胺(OA)和酪胺(TA),在无脊椎动物中含量丰富。TA在[具体物种1]和[具体物种2]中均有表达,并且在调节每个生物体的基本生命功能中发挥重要作用。OA和TA被认为分别是肾上腺素和去甲肾上腺素在哺乳动物中的同源物,并且在受到触发时,它们会在应激反应中对各种应激源做出反应。5-HT调节[具体物种]中的多种行为,包括产卵、雄性交配、运动和咽部抽吸。5-HT主要通过其受体发挥作用,在果蝇和线虫中均已描述了多种类型的受体。[具体物种]的成体大脑由大约80个血清素能神经元组成,这些神经元参与昼夜节律、进食、攻击行为和长期记忆形成的调节。DA是一种主要的单胺类神经递质,介导多种关键的机体功能,并且对于无脊椎动物中的突触传递至关重要,就如同它在哺乳动物中一样,在哺乳动物中它也是肾上腺素和去甲肾上腺素合成的前体。在[具体物种1]和[具体物种2]中,如同在哺乳动物中一样,DA受体发挥着关键作用,并且通常根据它们与下游G蛋白的预测偶联关系分为两类,即D1样和D2样。[具体物种1]在光感受器以及中枢神经系统中的少数神经元中使用组胺作为神经递质。[具体物种2]不使用组胺作为神经递质。在这里,我们综述了在无脊椎动物中发现的已知胺类神经递质的完整集合,并利用关于[具体物种1]和[具体物种2]的大量文献讨论它们的生物学和调节功能。我们还提出了胺能神经递质系统在调节神经生理活动和行为方面的潜在相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7ef/9978017/3bd143bd0b12/fphys-14-970405-g001.jpg

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