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Sensing of amino acids by the gut-expressed taste receptor T1R1-T1R3 stimulates CCK secretion.
Daly, Kristian; Al-Rammahi, Miran; Moran, Andrew; Marcello, Marco; Ninomiya, Yuzo; Shirazi-Beechey, Soraya P.
Affiliation
  • Daly K; Epithelial Function and Development Group, Department of Functional and Comparative Genomics, University of Liverpool, Liverpool, UK.
Am J Physiol Gastrointest Liver Physiol ; 304(3): G271-82, 2013 Feb 01.
Article in En | MEDLINE | ID: mdl-23203156
ABSTRACT
CCK is secreted by endocrine cells of the proximal intestine in response to dietary components, including amino acids. CCK plays a variety of roles in digestive processes, including inhibition of food intake, consistent with a role in satiety. In the lingual epithelium, the sensing of a broad spectrum of L-amino acids is accomplished by the heteromeric amino acid (umami) taste receptor (T1R1-T1R3). T1R1 and T1R3 subunits are also expressed in the intestine. A defining characteristic of umami sensing by T1R1-T1R3 is its potentiation by IMP or GMP. Furthermore, T1R1-T1R3 is not activated by Trp. We show here that, in response to L-amino acids (Phe, Leu, Glu, and Trp), but not D-amino acids, STC-1 enteroendocrine cells and mouse proximal small intestinal tissue explants secrete CCK and that IMP enhances Phe-, Leu-, and Glu-induced, but not Trp-induced, CCK secretion. Furthermore, small interfering RNA inhibition of T1R1 expression in STC-1 cells results in significant diminution of Phe-, Leu-, and Glu-stimulated, but not Trp-stimulated, CCK release. In STC-1 cells and mouse intestine, gurmarin inhibits Phe-, Leu-, and Glu-induced, but not Trp-stimulated, CCK secretion. In contrast, the Ca(2+)-sensing receptor antagonist NPS2143 inhibits Phe-stimulated CCK release partially and Trp-induced CCK secretion totally in mouse intestine. However, NPS2143 has no effect on Leu- or Glu-induced CCK secretion. Collectively, our data demonstrate that functional characteristics and cellular location of the gut-expressed T1R1-T1R3 support its role as a luminal sensor for Phe-, Leu-, and Glu-induced CCK secretion.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Cholecystokinin / Gastrointestinal Tract / Receptors, G-Protein-Coupled / Amino Acids Limits: Animals Language: En Year: 2013 Type: Article

Full text: 1 Database: MEDLINE Main subject: Cholecystokinin / Gastrointestinal Tract / Receptors, G-Protein-Coupled / Amino Acids Limits: Animals Language: En Year: 2013 Type: Article