Kindt Katie S, Quast Kathleen B, Giles Andrew C, De Subhajyoti, Hendrey Dan, Nicastro Ian, Rankin Catharine H, Schafer William R
Biomedical Sciences Graduate Program, University of California, San Diego, La Jolla CA 92093, USA.
Neuron. 2007 Aug 16;55(4):662-76. doi: 10.1016/j.neuron.2007.07.023.
Dopamine has been implicated in the modulation of diverse forms of behavioral plasticity, including appetitive learning and addiction. An important challenge is to understand how dopamine's effects at the cellular level alter the properties of neural circuits to modify behavior. In the nematode C. elegans, dopamine modulates habituation of an escape reflex triggered by body touch. In the absence of food, animals habituate more rapidly than in the presence of food; this contextual information about food availability is provided by dopaminergic mechanosensory neurons that sense the presence of bacteria. We find that dopamine alters habituation kinetics by selectively modulating the touch responses of the anterior-body mechanoreceptors; this modulation involves a D1-like dopamine receptor, a Gq/PLC-beta signaling pathway, and calcium release within the touch neurons. Interestingly, the body touch mechanoreceptors can themselves excite the dopamine neurons, forming a positive feedback loop capable of integrating context and experience to modulate mechanosensory attention.
多巴胺已被证明与多种形式的行为可塑性调节有关,包括食欲学习和成瘾。一个重要的挑战是了解多巴胺在细胞水平上的作用如何改变神经回路的特性以改变行为。在秀丽隐杆线虫中,多巴胺调节由身体触摸触发的逃避反射的习惯化。在没有食物的情况下,动物比有食物时更快地产生习惯化;关于食物可用性的这种背景信息由感知细菌存在的多巴胺能机械感觉神经元提供。我们发现多巴胺通过选择性调节前体机械感受器的触觉反应来改变习惯化动力学;这种调节涉及一种D1样多巴胺受体、一条Gq/PLC-β信号通路以及触觉神经元内的钙释放。有趣的是,身体触摸机械感受器本身可以刺激多巴胺神经元,形成一个正反馈回路,能够整合背景和经验以调节机械感觉注意力。