Literature DB >> 16249010

Fatty acid responses in taste cells from obesity-prone and -resistant rats.

Timothy A Gilbertson1, Lidong Liu, Insook Kim, Catherine A Burks, Dane R Hansen.   

Abstract

One of the transduction mechanisms for the chemoreception of fat has been proposed to involve the inhibition of delayed rectifying potassium (DRK) channels by polyunsaturated free fatty acids (PUFAs). In the present study we have compared the responsiveness of fungiform taste receptor cells (TRCs) to fatty acids in obesity-prone (Osborne-Mendel; O-M) and obesity-resistant (S5B/Pl) rat strains using patch clamp recording. TRCs from S5B/Pl rats were markedly more responsive to PUFAs than those from O-M, yet with identical inhibition constants. Moreover, addition of PUFAs to subthreshold concentrations of saccharin enhanced preference for the mixture in two-bottle preference tests compared to the saccharin alone in S5B/Pl but not O-M rats. The correlation between electrophysiological and behavioral effects of PUFAs suggested that differences in fatty acid-sensitive DRK expression may underlie the phenotypic differences between S5B/Pl and O-M rats. Consistent with this hypothesis, O-M rats exhibit a greater DRK current density and express quantitatively more DRK channels as assayed using quantitative real-time PCR. No differences were found when comparing expression of fatty acid activated two pore domain potassium channels. We propose that the ratio of fatty acid-sensitive DRK channels to fatty acid-insensitive DRK channels may be important to contributing to overall peripheral fatty acid sensitivity and in that way influence the strength of the resulting chemosensory response to fat.

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Year:  2005        PMID: 16249010     DOI: 10.1016/j.physbeh.2005.08.057

Source DB:  PubMed          Journal:  Physiol Behav        ISSN: 0031-9384


  27 in total

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Review 2.  Is there a fatty acid taste?

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3.  Preference for linoleic acid in obesity-prone and obesity-resistant rats is attenuated by the reduction of CD36 on the tongue.

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4.  ERK1/2 activation in human taste bud cells regulates fatty acid signaling and gustatory perception of fat in mice and humans.

Authors:  Selvakumar Subramaniam; Mehmet Hakan Ozdener; Souleymane Abdoul-Azize; Katsuyoshi Saito; Bilal Malik; Guillaume Maquart; Toshihiro Hashimoto; Philippe Marambaud; Mourad Aribi; Michael G Tordoff; Philippe Besnard; Naim Akhtar Khan
Journal:  FASEB J       Date:  2016-06-29       Impact factor: 5.191

5.  Transient receptor potential channel type M5 is essential for fat taste.

Authors:  Pin Liu; Bhavik P Shah; Stephanie Croasdell; Timothy A Gilbertson
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6.  Altered orosensory sensitivity to oils in CCK-1 receptor deficient rats.

Authors:  T D Swartz; A Hajnal; M Covasa
Journal:  Physiol Behav       Date:  2010-01-12

7.  "Entero-sensory" detection of foodstuffs.

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8.  Macronutrient choice of BTBR.NZW mice congenic for a 21-gene region of chromosome 17.

Authors:  Michael G Tordoff; Samira A Jaji; Jacob M Marks; Hillary T Ellis
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Review 9.  The cell biology of taste.

Authors:  Nirupa Chaudhari; Stephen D Roper
Journal:  J Cell Biol       Date:  2010-08-09       Impact factor: 10.539

10.  CD36 mRNA in the gastrointestinal tract is differentially regulated by dietary fat intake in obesity-prone and obesity-resistant rats.

Authors:  Stefany D Primeaux; H Douglas Braymer; George A Bray
Journal:  Dig Dis Sci       Date:  2012-08-23       Impact factor: 3.199

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