Search results for "TASTE RECEPTOR"

showing 10 items of 43 documents

Characterization of taste compounds: chemical structures and sensory properties

2016

Characterization of taste compounds: chemical structures and sensory properties

0106 biological sciences0301 basic medicineTastetarpenoidsweetenerChemistry[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionumami and kokumi compoundsSensory systemUmami01 natural sciences3. Good health[SDV.AEN] Life Sciences [q-bio]/Food and Nutrition03 medical and health sciences030104 developmental biologysweet-tastingBiochemistrycarbohydrateTaste receptor010608 biotechnology[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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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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Salivary protein profiles and sensitivity to the bitter taste of caffeine.

2011

WOS: 000298381900008; International audience; The interindividual variation in the sensitivity to bitterness is attributed in part to genetic polymorphism at the taste receptor level, but other factors, such as saliva composition, might be involved. In order to investigate this, 2 groups of subjects (hyposensitive, hypersensitive) were selected from 29 healthy male volunteers based on their detection thresholds for caffeine, and their salivary proteome composition was compared. Abundance of 26 of the 255 spots detected on saliva electrophoretic patterns was significantly different between hypo- and hypersensitive subjects. Saliva of hypersensitive subjects contained higher levels of amylase…

Immunoglobulin AMaleSalivaPhysiologymedicine.medical_treatment[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionperceptionbitternessin-vivoBehavioral Neurosciencechemistry.chemical_compound0302 clinical medicineTaste receptorphenolic astringent stimuliAmylase0303 health scienceswhole salivabiologyperiodontitis patientsMiddle AgedSensory Systemsmucosal pellicleTasteTaste ThresholdCystatinCaffeineimmunoglobulin-acystatinsAdultmedicine.medical_specialtyproteolysisproteomeSerum albumin03 medical and health sciencesstomatognathic systemPhysiology (medical)Internal medicineCaffeinemedicineHumansSalivary Proteins and Peptidescystatin030304 developmental biologysalivaProteasealpha-amylase030206 dentistryEndocrinologychemistrytwo-dimensionalelectrophoresisbiology.protein[SDV.AEN]Life Sciences [q-bio]/Food and Nutritionhealthy-subjects
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Plant polyphenols, chemoreception, taste receptors and taste management

2019

International audience; Purpose of review Polyphenols display beneficial health effects through chemopreventive actions on numerous chronic diseases including cancers, metabolic disorders, reproductive disorders and eating behaviour disorders. According to the principle of chemoreception, polyphenols bind cellular targets capable of accepting their stereochemistry, namely metabolizing enzymes and protein receptors, including taste receptors. The extraoral expression of taste receptors and their pharmacological interest in terms of novel drug therapies open up new perspectives on the potential use of these compounds and their interactions with other chemicals in cells. These new perspectives…

0301 basic medicineDrugTasteChemoreceptormedia_common.quotation_subjectPhytochemicalsMedicine (miscellaneous)BiologyPharmacologybitterness03 medical and health sciences0302 clinical medicineTaste receptortanninsHumansReceptorEating behaviourmedia_common030109 nutrition & dieteticsNutrition and DieteticsPolyphenolsfood and beverages030208 emergency & critical care medicineTaste Budstype 2 taste receptor modulationtaste interaction3. Good healthPolyphenolTaste(iso)flavonoidsSignalling pathways[SDV.AEN]Life Sciences [q-bio]/Food and NutritionSignal Transduction
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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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The Recent Development of a Sweet-Tasting Brazzein and its Potential Industrial Applications

2016

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. This chapter describes the biochemical, structural, sensory, and physiological properties of brazzein. We will summarize the current knowledge of the structure-activity relationship of brazzein. The biotechnological product…

0301 basic medicine0106 biological sciences[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionreceiver01 natural sciences03 medical and health sciences0404 agricultural biotechnology010608 biotechnologygoût sucréBrazzeinSweet-tasting proteinHigh-potency sweetenersPentadiplandra030304 developmental biology2. Zero hunger0303 health sciencesbiologySweet-taste receptorStructure-function relationshipfood and beverages04 agricultural and veterinary sciencesbiology.organism_classification040401 food scienceWest african[SDV.AEN] Life Sciences [q-bio]/Food and Nutrition030104 developmental biologyprotéinehigh-potency sweetenerNatural sourcebiology.proteinBrazzeinBiochemical engineeringproteinédulcorant intenserécepteur[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Fatty-acid preference changes during development in Drosophila melanogaster.

2011

WOS:000296521400044; International audience; Fatty-acids (FAs) are required in the diet of many animals throughout their life. However, the mechanisms involved in the perception of and preferences for dietary saturated and unsaturated FAs (SFAs and UFAs, respectively) remain poorly explored, especially in insects. Using the model species Drosophila melanogaster, we measured the responses of wild-type larvae and adults to pure SFAs (14, 16, and 18 carbons) and UFAs (C18 with 1, 2, or 3 double-bonds). Individual and group behavioral tests revealed different preferences in larvae and adults. Larvae preferred UFAs whereas SFAs tended to induce both a strong aversion and a persistent aggregation…

[ SDV.BA.ZI ] Life Sciences [q-bio]/Animal biology/Invertebrate Zoology[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionlcsh:MedicineInsectMESH : Behavior AnimalBiochemistrychemistry.chemical_compoundBehavioral EcologyMESH : Drosophila melanogasterMESH: Behavior AnimalMESH: AnimalsPalatabilitylcsh:ScienceMESH : Fatty Acidsmedia_commonchemistry.chemical_classificationLarvaMultidisciplinaryMESH : Food PreferencesEcologyAnimal BehaviorBehavior AnimalEcologyMESH : Fatty Acids UnsaturatedDrosophila MelanogasterFatty AcidsAge FactorsAnimal ModelsNeuroethologyMESH: Fatty Acids UnsaturatedtrpLipidsPreferenceMESH: Fatty AcidsMESH: Dietary FatsSex pheromoneLarvadietary fatFatty Acids Unsaturatedtaste receptor cellSensory PerceptionDrosophila melanogasterResearch Articlelinoleic acidmedia_common.quotation_subjectLinoleic acidZoologylarvaeBiologyMESH: Drosophila melanogasterFood PreferencesModel OrganismslipidAnimalsMESH: Food PreferencesBiologyMESH: Age FactorsEvolutionary BiologyChemical EcologyMESH : Larvalcsh:RfungiFatty acidbiology.organism_classificationDietary Fatstaste receptor cell;dietary fat;aggregation pheromone;linoleic acid;larvae;lipid;trp;palatability;metabolism;mutation[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoologychemistrypalatabilitylcsh:QMESH : Age FactorsMESH : AnimalsmutationmetabolismMESH: Larva[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : Dietary FatsNeuroscienceaggregation pheromone
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Taste perception and integration

2016

Revue; IntroductionThe sense of taste is essential for the evaluation of food quality. It allows, at the level of the oral cavity, to evaluate the caloric content of the consumed food, to detect the presence of salt, and protect us against the ingestion of toxic molecules. Our gustatory system allows the perception of different food constituents as alkali metallic salts (salty), acids (sour), sugars (sweet), and bitter compounds. Umami is a different taste, arising from the perception of amino acids, such as l-glutamate, and 5′-ribonucleotides. Other taste qualities are still a matter of debate, including fat taste, corresponding to the taste of fatty acids (Khan and Besnard, 2009), metalli…

2. Zero hunger0303 health sciencesTasteCommunicationbusiness.industry[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionmedia_common.quotation_subjectSensory system04 agricultural and veterinary sciencesUmami040401 food science[SDV.AEN] Life Sciences [q-bio]/Food and Nutrition03 medical and health sciences0404 agricultural biotechnologyTaste receptorPerceptionBrain levelWine tastingPsychologybusinessAftertaste[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030304 developmental biologymedia_common
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Chemosensory signalling pathways involved in sensing of amino acids by the ghrelin cell

2015

AbstractTaste receptors on enteroendocrine cells sense nutrients and transmit signals that control gut hormone release. This study aimed to investigate the amino acid (AA) sensing mechanisms of the ghrelin cell in a gastric ghrelinoma cell line, tissue segments and mice. Peptone and specific classes of amino acids stimulate ghrelin secretion in the ghrelinoma cell line. Sensing of L-Phe occurs via the CaSR, monosodium glutamate via the TAS1R1-TAS1R3 while L-Ala and peptone act via 2 different amino acid taste receptors: CaSR & TAS1R1-TAS1R3 and CaSR & GPRC6A, respectively. The stimulatory effect of peptone on ghrelin release was mimicked ex vivo in gastric but not in jejunal tissue …

medicine.medical_specialty[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionEnteroendocrine cellGPRC6ANutrient sensingBiologyArticleReceptors G-Protein-CoupledMice03 medical and health sciences0302 clinical medicineGlucagon-Like Peptide 1Receptor-Interacting Protein Serine-Threonine Kinase 2Taste receptorCell Line TumorInternal medicinemedicineFood and NutritionAnimalsAmino AcidsReceptor030304 developmental biology0303 health sciencesMultidisciplinarydigestive oral and skin physiologyGhrelinEndocrinologySomatostatinReceptor-Interacting Protein Serine-Threonine KinasesAlimentation et NutritionGhrelin[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryGhrelin secretionhormones hormone substitutes and hormone antagonistsSignal TransductionScientific Reports
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Functional roles of the sweet taste receptor in oral and extraoral tissues

2014

International audience; Purpose of review: This review summarizes and discusses the current knowledge about the physiological roles of the sweet taste receptor in oral and extraoral tissues. Recent findings: The expression of a functional sweet taste receptor has been reported in numerous extragustatory tissues, including the gut, pancreas, bladder, brain and, more recently, bone and adipose tissues. In the gut, this receptor has been suggested to be involved in luminal glucose sensing, the release of some satiety hormones, the expression of glucose transporters, and the maintenance of glucose homeostasis. More recently, the sweet taste receptor was proposed to regulate adipogenesis and bon…

medicine.medical_specialtyTasteinsulinobesitysweetenerProtein ConformationUrinary BladderMedicine (miscellaneous)BiologyBioinformaticsReceptors G-Protein-Coupled03 medical and health sciences0302 clinical medicinestomatognathic systemInternal medicineInsulin Secretion[SDV.IDA]Life Sciences [q-bio]/Food engineeringmedicineAnimalsHumans[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringLymphocytesInsulin secretionReceptor030304 developmental biologyCARBOHYDRATES: Edited by Luc Tappy and Bettina Mittendorfer0303 health sciencesPolymorphism GeneticNutrition and Dieteticsdiabetesdigestive oral and skin physiologyfood and beveragesHeartSweetening agentsSweet tastetaste receptor functionTaste BudsGastrointestinal TractEndocrinologyAdipose TissuecarbohydrateSweetening AgentsTasteModels Animal030217 neurology & neurosurgeryInsulin metabolism
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