RRC ID 46719
著者 Ezak MJ, Ferkey DM.
タイトル The C. elegans D2-like dopamine receptor DOP-3 decreases behavioral sensitivity to the olfactory stimulus 1-octanol.
ジャーナル PLoS One
Abstract We previously found that dopamine signaling modulates the sensitivity of wild-type C. elegans to the aversive odorant 1-octanol. C. elegans lacking the CAT-2 tyrosine hydroxylase enzyme, which is required for dopamine biosynthesis, are hypersensitive in their behavioral avoidance of dilute concentrations of octanol. Dopamine can also modulate the context-dependent response of C. elegans lacking RGS-3 function, a negative regulator of G alpha signaling. rgs-3 mutant animals are defective in their avoidance of 100% octanol when they are assayed in the absence of food (E. coli bacterial lawn), but their response is restored when they are assayed in the presence of food or exogenous dopamine. However, it is not known which receptor might be mediating dopamine's effects on octanol avoidance. Herein we describe a role for the C. elegans D2-like receptor DOP-3 in the regulation of olfactory sensitivity. We show that DOP-3 is required for the ability of food and exogenous dopamine to rescue the octanol avoidance defect of rgs-3 mutant animals. In addition, otherwise wild-type animals lacking DOP-3 function are hypersensitive to dilute octanol, reminiscent of cat-2 mutants. Furthermore, we demonstrate that DOP-3 function in the ASH sensory neurons is sufficient to rescue the hypersensitivity of dop-3 mutant animals, while dop-3 RNAi knockdown in ASH results in octanol hypersensitivity. Taken together, our data suggest that dopaminergic signaling through DOP-3 normally acts to dampen ASH signaling and behavioral sensitivity to octanol.
巻・号 5(3)
ページ e9487
公開日 2010-3-2
DOI 10.1371/journal.pone.0009487
PMID 20209143
PMC PMC2830454
MeSH 1-Octanol / pharmacology* Animals Behavior, Animal* Caenorhabditis elegans Caenorhabditis elegans Proteins / chemistry Caenorhabditis elegans Proteins / physiology* Crosses, Genetic Gene Expression Regulation Models, Biological Mutation Neurons / metabolism RNA Interference Receptors, Dopamine D2 / chemistry Receptors, Dopamine D2 / physiology* Sensory Receptor Cells / metabolism Signal Transduction Smell Transgenes
IF 2.74
引用数 28
WOS 分野 NEUROSCIENCES
リソース情報
線虫 tm1392