Search results for "sweet taste receptor"

showing 5 items of 5 documents

Sweeteners and sweetness enhancers

2017

indexation en cours; PURPOSE OF REVIEW: The current review summarizes and discusses current knowledge on sweeteners and sweetness enhancers. RECENT FINDINGS: The perception of sweet taste is mediated by the type 1 taste receptor 2 (T1R2)/type 1 taste receptor 3 (T1R3) receptor, which is expressed in the oral cavity, where it provides input on the caloric and macronutrient contents of ingested food. This receptor recognizes all the compounds (natural or artificial) perceived as sweet by people. Sweeteners are highly chemically diverse including natural sugars, sugar alcohols, natural and synthetic sweeteners, and sweet-tasting proteins. This single receptor is also the target for developing …

0301 basic medicineobesitysweetener[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionreceiverMedicine (miscellaneous)PharmacologyOral cavityReceptors G-Protein-Coupled03 medical and health sciencesSugar AlcoholsTaste receptorgoût sucréDietary CarbohydratesAnimalsHumansSteviaMedicinesweet taste receptorNutrition and Dieteticsbusiness.industrydigestive oral and skin physiologyTaste Perceptionfood and beveragesSweet tasteSweetnessobésité030104 developmental biologycarbohydrateSweetening AgentsTastebusinessrécepteur[SDV.AEN]Life Sciences [q-bio]/Food and Nutritiondiabète
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Activation of a Sweet Taste Receptor by Oleanane-Type Glycosides from Wisteria sinensis

2022

The phytochemical study of Wisteria sinensis (Sims) DC. (Fabaceae), commonly known as the Chinese Wisteria, led to the isolation of seven oleanane-type glycosides from an aqueous-ethanolic extract of the roots. After successive purifications by various chromatographic methods, like solid/liquid chromatographic methods, vacuum liquid chromatography (VLC), medium pressure liquid chromatography (MPLC), on normal and reverse phase (RP-18 silica gel), and size exclusion chromatography on Sephadex L, their structures were elucidated by an extensive 600 MHz NMR analysis including 1D and 2D NMR experiments as well as ESI-MS. Among the seven isolated saponins, two have never been reported before : 3…

Organic ChemistryPharmaceutical ScienceFabaceaeSweet taste receptorsWisteria sinensisTAS1R2/TAS1R3Analytical ChemistryChemistry (miscellaneous)Drug Discovery[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyMolecular Medicine<i>Wisteria sinensis</i>; Fabaceae; triterpene glycosides; sweet taste; TAS1R2/TAS1R3Physical and Theoretical Chemistry2D-NMRMolecules
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Novel scaffold of natural compound eliciting sweet taste revealed by machine learning

2020

Abstract Sugar replacement is still an active issue in the food industry. The use of structure-taste relationships remains one of the most rational strategy to expand the chemical space associated to sweet taste. A new machine learning model has been setup based on an update of the SweetenersDB and on open-source molecular features. It has been implemented on a freely accessible webserver. Cellular functional assays show that the sweet taste receptor is activated in vitro by a new scaffold of natural compounds identified by the in silico protocol. The newly identified sweetener belongs to the lignan chemical family and opens a new chemical space to explore.

ScaffoldsweetenerComputer scienceIn silicoMachine learningcomputer.software_genre01 natural sciencesAnalytical ChemistryReceptors G-Protein-Coupled0404 agricultural biotechnologysweet tastenatural compoundsHumans[CHIM]Chemical Sciences[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biologysweet taste receptor2. Zero hungerbusiness.industryNatural compound010401 analytical chemistrydigestive oral and skin physiologySweet taste04 agricultural and veterinary sciencesGeneral Medicine040401 food scienceChemical space0104 chemical sciences[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistrymachine learningSweetening AgentsTasteArtificial intelligencebusinesscomputer[CHIM.CHEM]Chemical Sciences/CheminformaticsFood Science
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Structure-function relationships of brazzein, a sweet-tasting protein and its interactions with the human sweet taste receptor

2018

International audience; Brazzein is a small heat- and pH-stable sweet-tasting protein isolated from the West African plant, Pentadiplandra brazzeana. Brazzein combines a highly sweet potency, a long history of human consumption, and a remarkable stability, giving it great potential as a natural sweetener. Due to the difficulties of obtaining brazzein from its natural source, several efforts have been made to express brazzein using various heterologous expression systems. Brazzein like all classes of sweet compounds (natural sugars, natural and artificial sweeteners) are perceived through the activation of the T1R2/T1R3 heterodimeric sweet taste receptor. T1R2 and T1R3 subunits are members o…

[SDV.AEN] Life Sciences [q-bio]/Food and Nutritionbrazzeindigestive oral and skin physiology[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular Biologyfood and beveragessweet-tasting protein[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biologysweet taste receptorsweet[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Expression and characterization of the human sweet taste receptor expressed in a mammalian inducible cell line

2018

International audience; Sweet taste perception is mediated by a heterodimeric receptor composed of the two distinct protein subunits, TAS1R2 and TAS1R3. TAS1R2 and TAS1R3 subunits are members of the small family of class C GPCRs. Class C GPCRs share a large N-terminal domain (NTD) linked to the heptahelical transmembrane domain by a cysteine-rich region. TAS1R2/TAS1R3 is the primary receptor for a diverse range of sweet compounds including natural sugars, sweet amino acids, artificial sweeteners and plant sweet-tasting proteins. In order to understand the molecular mechanisms that govern receptor – ligand interactions and the relative contribution of the two subunits to the detection of swe…

taste[SDV.AEN] Life Sciences [q-bio]/Food and NutritionGPCRsweetenersugarsweet taste receptor[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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