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内分泌控制论:神经肽作为行为决策中的分子开关。

Endocrine cybernetics: neuropeptides as molecular switches in behavioural decisions.

机构信息

Department of Zoology, Stockholm University, 10691 Stockholm, Sweden.

Neurobiology and Genetics, Theodor-Boveri-Institute, Biocenter, University of Würzburg, Am Hubland Würzburg 97074, Germany.

出版信息

Open Biol. 2022 Jul;12(7):220174. doi: 10.1098/rsob.220174. Epub 2022 Jul 27.

Abstract

Plasticity in animal behaviour relies on the ability to integrate external and internal cues from the changing environment and hence modulate activity in synaptic circuits of the brain. This context-dependent neuromodulation is largely based on non-synaptic signalling with neuropeptides. Here, we describe select peptidergic systems in the brain that act at different levels of a hierarchy to modulate behaviour and associated physiology. These systems modulate circuits in brain regions, such as the central complex and the mushroom bodies, which supervise specific behaviours. At the top level of the hierarchy there are small numbers of large peptidergic neurons that arborize widely in multiple areas of the brain to orchestrate or modulate global activity in a state and context-dependent manner. At the bottom level local peptidergic neurons provide executive neuromodulation of sensory gain and intrinsically in restricted parts of specific neuronal circuits. The orchestrating neurons receive interoceptive signals that mediate energy and sleep homeostasis, metabolic state and circadian timing, as well as external cues that affect food search, aggression or mating. Some of these cues can be triggers of conflicting behaviours such as mating versus aggression, or sleep versus feeding, and peptidergic neurons participate in circuits, enabling behaviour choices and switches.

摘要

动物行为的可塑性依赖于整合来自不断变化环境的外部和内部线索的能力,从而调节大脑突触回路的活动。这种依赖于上下文的神经调制主要基于神经肽的非突触信号。在这里,我们描述了大脑中一些特定的肽能系统,它们在行为和相关生理学的层次结构的不同水平上发挥作用。这些系统调节大脑区域中的回路,例如中央复合体和蘑菇体,这些区域监督特定的行为。在层次结构的顶层,有少量的大型肽能神经元,它们在大脑的多个区域广泛分枝,以协调或调节特定行为的全局活动。在底层,局部肽能神经元提供对感觉增益的执行性神经调制和特定神经元回路的受限部分的内在神经调制。协调神经元接收内部感觉信号,介导能量和睡眠稳态、代谢状态和昼夜节律,以及影响食物搜索、攻击或交配的外部线索。其中一些线索可能是冲突行为的触发因素,例如交配与攻击,或睡眠与进食,肽能神经元参与这些回路,使行为选择和转换成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fd6/9326288/f73f55a831a6/rsob220174f01.jpg

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