An energy supply network of nutrient absorption coordinated by calcium and T1R taste receptors in rat small intestine
- Oliver J. Mace1,
- Norma Lister1,
- Emma Morgan1,
- Emma Shepherd1,
- Julie Affleck1,
- Philip Helliwell1,
- John R. Bronk1,
- George L. Kellett1,
- David Meredith2,3,
- Richard Boyd2,
- Myrtani Pieri2,3,
- Pat D. Bailey4,5,
- Rachel Pettcrew5 and
- David Foley5
- 1Department of Biology (Area 3), University of York, Heslington, York YO10 5YW, UK2Department of Physiology, Anatomy and Genetics, University of Oxford, Le Gros Clark Building, South Parks Road, Oxford OX1 3QX, UK3School of Life Sciences, Oxford Brookes University, Headington, Oxford, OX3 OBP4The Dean's Office, Faculty of Natural Sciences, Keele University, Keele, Staffordshire ST5 5BG, UK5School of Chemistry, University of Manchester, Faraday Building, Sackville Street, Manchester M60 1QD, UK
- Corresponding author G. L. Kellett: Department of Biology (Area 3), The University of York, Heslington, York YO10 5YW, UK. Email: glk1{at}york.ac.uk
Abstract
T1R taste receptors are present throughout the gastrointestinal tract. Glucose absorption comprises active absorption via SGLT1 and facilitated absorption via GLUT2 in the apical membrane. Trafficking of apical GLUT2 is rapidly up-regulated by glucose and artificial sweeteners, which act through T1R2 + T1R3/α-gustducin to activate PLC β2 and PKC βII. We therefore investigated whether non-sugar nutrients are regulated by taste receptors using perfused rat jejunum in vivo. Under different conditions, we observed a Ca2+-dependent reciprocal relationship between the H+/oligopeptide transporter PepT1 and apical GLUT2, reflecting the fact that trafficking of PepT1 and GLUT2 to the apical membrane is inhibited and activated by PKC βII, respectively. Addition of l-glutamate or sucralose to a perfusate containing low glucose (20 mm) each activated PKC βII and decreased apical PepT1 levels and absorption of the hydrolysis-resistant dipeptide l-Phe(ΨS)-l-Ala (1 mm), while increasing apical GLUT2 and glucose absorption within minutes. Switching perfusion from mannitol to glucose (75 mm) exerted similar effects. l-Glutamate induced rapid GPCR internalization of T1R1, T1R3 and transducin, whereas sucralose internalized T1R2, T1R3 and α-gustducin. We conclude that l-glutamate acts via amino acid and glucose via sweet taste receptors to coordinate regulation of PepT1 and apical GLUT2 reciprocally through a common enterocytic pool of PKC βII. These data suggest the existence of a wider Ca2+ and taste receptor-coordinated transport network incorporating other nutrients and/or other stimuli capable of activating PKC βII and additional transporters, such as the aspartate/glutamate transporter, EAAC1, whose level was doubled by l-glutamate. The network may control energy supply.
Footnotes
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(Received 23 July 2008; accepted after revision 6 November 2008; first published online 10 November 2008)
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We dedicate this paper to the memory of Professor J. R. Bronk.
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This article has online supplemental material.













