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A Molecular and Cellular Context-Dependent Role for Ir76b in Detection of Amino Acid Taste.


ABSTRACT: Amino acid taste is expected to be a universal property among animals. Although sweet, bitter, salt, and water tastes have been well characterized in insects, the mechanisms underlying amino acid taste remain elusive. From a Drosophila RNAi screen, we identify an ionotropic receptor, Ir76b, as necessary for yeast preference. Using calcium imaging, we identify Ir76b+ amino acid taste neurons in legs, overlapping partially with sweet neurons but not those that sense other tastants. Ir76b mutants have reduced responses to amino acids, which are rescued by transgenic expression of Ir76b and a mosquito ortholog AgIr76b. Co-expression of Ir20a with Ir76b is sufficient for conferring amino acid responses in sweet-taste neurons. Notably, Ir20a also serves to block salt response of Ir76b. Our study establishes the role of a highly conserved receptor in amino acid taste and suggests a mechanism for mutually exclusive roles of Ir76b in salt- and amino-acid-sensing neurons.

SUBMITTER: Ganguly A 

PROVIDER: S-EPMC5258133 | biostudies-literature | 2017 Jan

REPOSITORIES: biostudies-literature

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A Molecular and Cellular Context-Dependent Role for Ir76b in Detection of Amino Acid Taste.

Ganguly Anindya A   Pang Lisa L   Duong Vi-Khoi VK   Lee Angelina A   Schoniger Hanni H   Varady Erika E   Dahanukar Anupama A  

Cell reports 20170101 3


Amino acid taste is expected to be a universal property among animals. Although sweet, bitter, salt, and water tastes have been well characterized in insects, the mechanisms underlying amino acid taste remain elusive. From a Drosophila RNAi screen, we identify an ionotropic receptor, Ir76b, as necessary for yeast preference. Using calcium imaging, we identify Ir76b<sup>+</sup> amino acid taste neurons in legs, overlapping partially with sweet neurons but not those that sense other tastants. Ir76  ...[more]

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