Sanyal Suparna, Wintle Richard F, Kindt Katie S, Nuttley William M, Arvan Rokhand, Fitzmaurice Paul, Bigras Eve, Merz David C, Hébert Terence E, van der Kooy Derek, Schafer William R, Culotti Joseph G, Van Tol Hubert H M
Departments of Psychiatry, Pharmacology, Institute of Medical Science, University of Toronto & Centre for Addiction and Mental Health, Toronto, Canada.
EMBO J. 2004 Jan 28;23(2):473-82. doi: 10.1038/sj.emboj.7600057. Epub 2004 Jan 22.
Dopamine-modulated behaviors, including information processing and reward, are subject to behavioral plasticity. Disruption of these behaviors is thought to support drug addictions and psychoses. The plasticity of dopamine-mediated behaviors, for example, habituation and sensitization, are not well understood at the molecular level. We show that in the nematode Caenorhabditis elegans, a D1-like dopamine receptor gene (dop-1) modulates the plasticity of mechanosensory behaviors in which dopamine had not been implicated previously. A mutant of dop-1 displayed faster habituation to nonlocalized mechanical stimulation. This phenotype was rescued by the introduction of a wild-type copy of the gene. The dop-1 gene is expressed in mechanosensory neurons, particularly the ALM and PLM neurons. Selective expression of the dop-1 gene in mechanosensory neurons using the mec-7 promoter rescues the mechanosensory deficit in dop-1 mutant animals. The tyrosine hydroxylase-deficient C. elegans mutant (cat-2) also displays these specific behavioral deficits. These observations provide genetic evidence that dopamine signaling modulates behavioral plasticity in C. elegans.
多巴胺调节的行为,包括信息处理和奖赏,会发生行为可塑性。这些行为的破坏被认为与药物成瘾和精神病有关。例如,多巴胺介导行为的可塑性,如习惯化和敏感化,在分子水平上还未被充分理解。我们发现,在线虫秀丽隐杆线虫中,一个类D1多巴胺受体基因(dop-1)调节了机械感觉行为的可塑性,而此前多巴胺并未被认为与该行为有关。dop-1的一个突变体对非定位机械刺激的习惯化速度更快。通过引入该基因的野生型拷贝挽救了这一表型。dop-1基因在机械感觉神经元中表达,特别是在ALM和PLM神经元中。使用mec-7启动子在机械感觉神经元中选择性表达dop-1基因可挽救dop-1突变动物的机械感觉缺陷。酪氨酸羟化酶缺陷的秀丽隐杆线虫突变体(cat-2)也表现出这些特定的行为缺陷。这些观察结果提供了基因证据,表明多巴胺信号传导调节秀丽隐杆线虫的行为可塑性。