An Odorant-Binding Protein Required for Suppression of Sweet Taste by Bitter Chemicals

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초록

Animals often must decide whether or not to consume a diet that contains competing attractive and aversive compounds. Here, using the fruit fly, Drosophila melanogaster, we describe a mechanism that influences this decision. Addition of bitter compounds to sucrose suppressed feeding behavior, and this inhibition depended on an odorant-binding protein (OBP) termed OBP49a. In wild-type flies, bitter compounds suppressed sucrose-induced action potentials, and the inhibition was impaired in Obp49a mutants. However, loss of OBP49a did not affect action potentials in sugar- or bitter-activated gustatory receptor neurons (GRNs) when the GRNs were presented with just one type of tastant. OBP49a was expressed in accessory cells and acted non-cell-autonomously to attenuate nerve firings in sugar-activated GRNs when bitter compounds were combined with sucrose. These findings demonstrate an unexpected role for an OBP in taste and identify a molecular player involved in the integration of opposing attractive and aversive gustatory inputs.

키워드

PHEROMONE-BINDING; OLFACTORY RECEPTORS; MOLECULAR EVOLUTION; GUSTATORY RECEPTORS; CAFFEINE RESPONSE; DROSOPHILA; EXPRESSION; FAMILY; GENES; MUTANTS
제목
An Odorant-Binding Protein Required for Suppression of Sweet Taste by Bitter Chemicals
저자
Jeong, Yong Taek; Shim, Jaewon; Oh, So Ra; Yoon, Hong In; Kim, Chul Hoon; Moon, Seok Jun; Montell, Craig
DOI
10.1016/j.neuron.2013.06.025
발행일
2013-08
유형
Article
저널명
Neuron
권
79
호
4
페이지
725 ~ 737