自动受体
多巴胺受体D2
神经科学
多巴胺
突触后电位
心理学
受体
兴奋剂
内科学
医学
作者
Estefanía P. Bello,Yolanda Mateo,Diego M. Gelman,Daniela Noaín,Jung Hoon Shin,Malcolm J. Low,Veronica A. Alvarez,David M. Lovinger,Marcelo Rubinstein
摘要
The authors provide definitive evidence for the in vivo contribution of D2 autoreceptors to dopamine-mediated behavior by studying mice deficient in D2 autoreceptors. These mice lack dopamine-mediated somatodendritic responses and inhibition of dopamine release, and show supersensitivity to the psychomotor effects of cocaine. Dopamine (DA) D2 receptors expressed in DA neurons (D2 autoreceptors) exert a negative feedback regulation that reduces DA neuron firing, DA synthesis and DA release. As D2 receptors are mostly expressed in postsynaptic neurons, pharmacological and genetic approaches have been unable to definitively address the in vivo contribution of D2 autoreceptors to DA-mediated behaviors. We found that midbrain DA neurons from mice deficient in D2 autoreceptors (Drd2loxP/loxP; Dat+/IRES−cre, referred to as autoDrd2KO mice) lacked DA-mediated somatodendritic synaptic responses and inhibition of DA release. AutoDrd2KO mice displayed elevated DA synthesis and release, hyperlocomotion and supersensitivity to the psychomotor effects of cocaine. The mice also exhibited increased place preference for cocaine and enhanced motivation for food reward. Our results highlight the importance of D2 autoreceptors in the regulation of DA neurotransmission and demonstrate that D2 autoreceptors are important for normal motor function, food-seeking behavior, and sensitivity to the locomotor and rewarding properties of cocaine.
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