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蘑菇体电路中的章鱼胺参与学习和记忆。

Octopamine in the mushroom body circuitry for learning and memory.

机构信息

Department of Animal Physiology, Institute of Biology, Leipzig University, 04103 Leipzig, Germany

出版信息

Learn Mem. 2024 Jun 11;31(5). doi: 10.1101/lm.053839.123. Print 2024 May.

Abstract

Octopamine, the functional analog of noradrenaline, modulates many different behaviors and physiological processes in invertebrates. In the central nervous system, a few octopaminergic neurons project throughout the brain and innervate almost all neuropils. The center of memory formation in insects, the mushroom bodies, receive octopaminergic innervations in all insects investigated so far. Different octopamine receptors, either increasing or decreasing cAMP or calcium levels in the cell, are localized in Kenyon cells, further supporting the release of octopamine in the mushroom bodies. In addition, different mushroom body (MB) output neurons, projection neurons, and dopaminergic PAM cells are targets of octopaminergic neurons, enabling the modulation of learning circuits at different neural sites. For some years, the theory persisted that octopamine mediates rewarding stimuli, whereas dopamine (DA) represents aversive stimuli. This simple picture has been challenged by the finding that DA is required for both appetitive and aversive learning. Furthermore, octopamine is also involved in aversive learning and a rather complex interaction between these biogenic amines seems to modulate learning and memory. This review summarizes the role of octopamine in MB function, focusing on the anatomical principles and the role of the biogenic amine in learning and memory.

摘要

章鱼胺是去甲肾上腺素的功能类似物,可调节无脊椎动物的许多不同行为和生理过程。在中枢神经系统中,少数章鱼胺能神经元投射到整个大脑,并支配几乎所有神经节。迄今为止,在所有研究过的昆虫中,作为昆虫记忆形成中心的蘑菇体都接收章鱼胺能神经支配。不同的章鱼胺受体,无论是增加还是降低细胞内的 cAMP 或钙水平,都定位于肯尼恩细胞中,进一步支持在蘑菇体中释放章鱼胺。此外,不同的蘑菇体(MB)输出神经元、投射神经元和多巴胺能 PAM 细胞是章鱼胺能神经元的靶标,能够在不同的神经部位调节学习回路。多年来,一直存在这样一种理论,即章鱼胺介导奖励刺激,而多巴胺(DA)代表厌恶刺激。这一简单的观点受到了挑战,因为发现 DA 是食欲和厌恶学习所必需的。此外,章鱼胺也参与厌恶学习,这两种生物胺之间存在着相当复杂的相互作用,似乎调节着学习和记忆。这篇综述总结了章鱼胺在 MB 功能中的作用,重点介绍了解剖学原理和生物胺在学习和记忆中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1a9/11199948/3552dcbfbc07/LM053839Sel_F1.jpg

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