Search results for "Glycoside hydrolase"

showing 10 items of 46 documents

Natural products for the treatment of Type 2 Diabetes Mellitus

2015

Type 2 diabetes mellitus is a metabolic disease characterized by persistent hyperglycemia. High blood sugar can produce long-term complications such as cardiovascular and renal disorders, retinopathy, and poor blood flow. Its development can be prevented or delayed in people with impaired glucose tolerance by implementing lifestyle changes or the use of therapeutic agents. Some of these drugs have been obtained from plants or have a microbial origin, such as galegine isolated from Galega officinalis, which has a great similarity to the antidiabetic drug metformin. Picnogenol, acarbose, miglitol, and voglibose are other antidiabetic products of natural origin. This review compiles the princi…

Blood GlucosePeroxisome Proliferator-Activated ReceptorsPharmaceutical ScienceMedical PlantsPharmacologyAnalytical ChemistryDrug DiscoveryGlucose homeostasisAcarboseClinical Trials as Topicdiabetesbiologyfood and beverages//purl.org/becyt/ford/3.1 [https]Medicina BásicaMolecular Medicine//purl.org/becyt/ford/3 [https]medicine.drugFarmacología y Farmaciamedicine.medical_specialtyCIENCIAS MÉDICAS Y DE LA SALUDBlood sugarfoodInternal medicineYerba-mateVoglibosemedicineDiabetes MellitusHumansHypoglycemic AgentsGlycoside Hydrolase InhibitorsClinical TrialsPharmacologyBiological Productsclinical trialsPlants Medicinalantidiabeticbusiness.industryMiglitolOrganic ChemistryType 2 Diabetes Mellitusalpha-Glucosidasesbiology.organism_classificationfood.foodEndocrinologyDiabetes Mellitus Type 2Complementary and alternative medicineAntidiabeticHyperglycemiaCiencias MédicasGalega officinalisalpha-Amylasesbusinessmedicinal plants
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Multiple copies of SUC4 regulatory regions may cause partial de-repression of invertase synthesis in Saccharomyces cerevisiae.

1992

Transformation to generate multiple copies of regulatory DNA sequences has been used to study the interactions between regulatory proteins and their target sequences, since a high copy number of these sequences may titrate trans-acting regulatory proteins. We have analyzed the synthesis of invertase in yeast strains carrying different SUC genes transformed with the multiple-copy plasmid pSH143, a derivative of pJDB207 containing the promoter and upstream regulatory sequences of SUC4. The results obtained seem to be strain dependent. Under repressing conditions a high copy number of SUC4 promoter regions may cause increased expression of the invertase genes resulting in the synthesis of exte…

ElectrophoresisGlycoside HydrolasesSaccharomyces cerevisiaeGenes FungalMolecular Sequence DataSaccharomyces cerevisiaePlasmidGene Expression Regulation FungalGeneticsPromoter Regions GeneticGeneRepetitive Sequences Nucleic AcidRegulation of gene expressionGeneticsBinding SitesbiologyBase Sequencebeta-FructofuranosidaseFungal geneticsPromoterGeneral Medicinebiology.organism_classificationInvertaseGlucoseRegulatory sequenceEnzyme RepressionPlasmidsCurrent genetics
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Differential expression of SUC genes: A question of bases

1994

Non-coding nucleotide sequences located 5' upstream of the transcriptional start site play an essential role in gene expression as they contain binding sites for transcription and regulatory factors. The yeast SUC gene family is a useful model to study the influence that nucleotide exchanges within the promoter regions have on their expression, since (i) these genes, regulated by glucose repression, are differentially transcribed (invertase activity produced by distinct SUC genes may show variations of about 10-fold); and (ii) promoter sequences of SUC3, SUC4, SUC5 and SUC7 are more than 99% homologous, showing only six base exchanges among all of them. Comparison of these nucleotide exchan…

GeneticsGlycoside Hydrolasesbeta-FructofuranosidaseGenes FungalSaccharomyces cerevisiaeNucleic acid sequenceGenetic VariationSaccharomyces cerevisiaeBiologybiology.organism_classificationMicrobiologyInfectious DiseasesPlasmidTranscription (biology)Gene Expression Regulation FungalMultigene FamilyGene expressionGene familyBinding sitePromoter Regions GeneticGeneFEMS Microbiology Reviews
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The clinical spectrum of alpha-L-iduronidase deficiency.

1985

We present five patients with alpha-L-iduronidase deficiency who do not have the typical Hurler or Scheie phenotypes; they are compared to 28 similarly atypical cases from the literature. Phenotypic differences are pointed out and intrafamilial similarities stressed. Among the various possible explanations for this situation, the existence of genetic compounds seems acceptable for some of the cases, but others seem to be caused by different mutations. The elucidation of these alternative possibilities from recent biochemical research is discussed.

GeneticsMaleAutosomal recessive inheritanceα l iduronidaseAdolescentGlycoside HydrolasesMucopolysaccharidosisMucopolysaccharidosis IInfantBiologyMucopolysaccharidosesmedicine.diseasePhenotypeIduronidasePhenotypeChild PreschoolmedicineHumansFemaleChildGenetics (clinical)American journal of medical genetics
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LC-ESI/HRMS analysis of glucosinolates, oxylipins and phenols in Italian rocket salad (Diplotaxis erucoides subsp. erucoides (L.) DC.) and evaluation…

2021

BACKGROUND: This study investigated the chemical profile and biological activity of Diplotaxis erucoides subsp. erucoides (L.) DC. (Brassicaceae) collected in Sicily (Italy). RESULTS: Liquid chromatography coupled with electrospray ionization and high-resolution mass spectrometry (LC-ESI/HRMS) analysis of the ethanol extract revealed the presence of 42 compounds – glucosinolates, hydroxycinnamic acids, flavonoids, and oxylipins. The extract was tested for its antioxidant activity using 2,2-diphenyl-1-picrylhydrazyl (DPPH), 2,2′-azinobis(3-ethylbenzothiazoline-6-sulfonic) acid (ABTS), ferric reducing ability power (FRAP), and β-carotene bleaching tests. Promising protection from lipid peroxi…

Glucosinolatesantioxidant activityantioxidant activity; Diplotaxis erucoides; hypoglycemic and hypolipidemic effect; LC-ESI/HRMS analysis; Antioxidants; Brassicaceae; Chromatography Liquid; Enzyme Inhibitors; Flavonoids; Glucosinolates; Glycoside Hydrolase Inhibitors; Humans; Mass Spectrometry; Oxylipins; Plant Extracts; Salads; Sicily; alpha-Amylases; alpha-GlucosidasesAntioxidantsMass SpectrometrySettore BIO/01 - Botanica GeneraleLC-ESI/HRMS analysisHumansGlycoside Hydrolase InhibitorsOxylipinsEnzyme InhibitorsSicilyFlavonoidsChromatographyLiquidPlant ExtractsSettore BIO/02 - Botanica Sistematicaalpha-GlucosidasesSettore CHIM/06 - Chimica Organicahypoglycemic and hypolipidemic effectBrassicaceaeSettore BIO/03 - Botanica Ambientale E ApplicataDiplotaxis erucoidesSaladsalpha-AmylasesChromatography Liquid
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Active Site Mapping of Xylan-Deconstructing Enzymes with Arabinoxylan Oligosaccharides Produced by Automated Glycan Assembly

2017

Xylan-degrading enzymes are crucial for the deconstruction of hemicellulosic biomass, making the hydrolysis products available for various industrial applications such as the production of biofuel. To determine the substrate specificities of these enzymes, we prepared a collection of complex xylan oligosaccharides by automated glycan assembly. Seven differentially protected building blocks provided the basis for the modular assembly of 2-substituted, 3-substituted, and 2-/3-substituted arabino- and glucuronoxylan oligosaccharides. Elongation of the xylan backbone relied on iterative additions of C4-fluorenylmethoxylcarbonyl (Fmoc) protected xylose building blocks to a linker-functionalized …

GlycanGlycoside HydrolasesStereochemistryOligosaccharidesSOLID-PHASE SYNTHESISXylose010402 general chemistryARABINOXYLANPLANT CELL WALL01 natural sciencesCatalysisSubstrate Specificity//purl.org/becyt/ford/1 [https]chemistry.chemical_compoundHydrolysisCellvibrioGlucuronoxylanCatalytic DomainArabinoxylan//purl.org/becyt/ford/1.4 [https]Organic chemistryBacteroidesGlycoside hydrolaseSolid-Phase Synthesis Techniqueschemistry.chemical_classificationbiology010405 organic chemistryHydrolysisCARBOHYDRATESOtras Ciencias QuímicasOrganic ChemistryCiencias QuímicasActive siteGeneral ChemistryXylan0104 chemical sciencescarbohydrates (lipids)Xylosidaseschemistrybiology.proteinXylansENZYMESCIENCIAS NATURALES Y EXACTAS
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Amylopectin: a major component of the residual body inCryptosporidium parvumoocysts

2004

Amylopectin is used for carbohydrate storage in different life-stages of a number of apicomplexan parasites. We have performed an ultrastructural analysis of amylopectin granules from the oocyst residual body and sporozoites ofCryptosporidium parvum. Amylopectin granules were studiedin situand after isolation from ‘French’ press disrupted parasites, by conventional transmission electron microscopy (TEM) of sectioned oocysts and various negative staining and cryoelectron microscopy techniques. Within the membrane-enclosed oocyst residuum large amylopectin granules (0·1–0·3 μm) can be found besides a characteristic large lipid body and a crystalline protein inclusion. Smaller granules were de…

Glycoside HydrolasesAmylopectinResidual bodyBiologylaw.inventionchemistry.chemical_compoundCell WalllawAnimalsCryptosporidium parvumCryoelectron MicroscopyOocystsfood and beveragesbiology.organism_classificationNegative stainStainingcarbohydrates (lipids)Microscopy ElectronInfectious DiseasesCryptosporidium parvumBiochemistrychemistryAmylopectinUltrastructureCarbohydrate storageAnimal Science and ZoologyParasitologyElectron microscopeParasitology
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Differential expression of the invertase-encoding SUC genes in Saccharomyces cerevisiae

1992

Invertase (INV) is encoded in Saccharomyces cerevisiae by a family of genes, comprising SUC1-SUC5 and SUC7. Production of INV is highly variable, dependent on the strain and SUC gene present in the cell. The differences in INV production derive from the structure of the genes or are dependent on the genetic background of the strain. Centromeric plasmids (based on YCp50) carrying one of the SUC genes (except SUC7) were introduced into a strain (SEY2101) lacking SUC genes. The INV produced by the transformants was dependent on the individual SUC genes, and correlated with INV mRNA levels. Plasmids in which SUC2 had been placed under control of promoters from the other SUC genes, were used to …

Glycoside HydrolasesGenes FungalMolecular Sequence DataSaccharomyces cerevisiaeSaccharomyces cerevisiaeRegulatory Sequences Nucleic AcidGene Expression Regulation EnzymologicPlasmidTranscription (biology)Gene Expression Regulation FungalGene expressionGeneticsRNA MessengerPromoter Regions GeneticGeneGeneticsBase Sequencebeta-FructofuranosidasebiologyNucleic acid sequenceRNA FungalPromoterGeneral Medicinebiochemical phenomena metabolism and nutritionbiology.organism_classificationMolecular biologyRegulatory sequenceGene
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The mucopolysaccharidoses: Inborn errors of glycosaminoglycan catabolism

1976

The mucopolysaccharidoses are genetic disorders of glycosaminoglycan metabolism. Patients with these diseases accumulate within the lysosomes of most tissues excessive amounts of dermatan and/or heparan sulfates, or of keratan sulfate. The clinical consequences of such glycosaminoglycan storage range from skeletal abnormalities to cardiovascular problems, and to motor and mental retardation. In all mucopolysaccharidoses, except Morquio disease, an excessive accumulation of sulfate-labeled glycosaminoglycans has been demonstrated in fibroblasts cultured from the patient's skin. It was subsequently shown that this was due to the deficiency of specific proteins which were named "corrective fac…

Glycoside HydrolasesKeratan sulfateMucopolysaccharidosisPrenatal diagnosisDiseaseMucopolysaccharidosesBiologyBioinformaticsmedicine.diseaseHuman geneticsEnzyme assayGlycosaminoglycanTissue culturechemistry.chemical_compoundPhenotypechemistryGeneticsmedicinebiology.proteinHumansSulfatasesLysosomesGenetics (clinical)GlycosaminoglycansHuman Genetics
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Quantitation of Free and Glycosidically Bound Volatiles in and Effect of Glycosidase Addition on Three Tomato Varieties (Solanum lycopersicumL.)

2007

The volatile fractions of three tomato cultivars (p73, Jorge, and Durinta) were studied in both free and glycosidically bound forms. The possibility of increasing the concentration of free volatile compounds by adding selected glycosidases was also tested. The free volatile fraction (FVF) of tomato juice was directly determined by headspace solid-phase microextraction (SPME). To analyze the glycosidically bound fraction (GBF), tomato juice samples were extracted with C18 cartridges and the resulting glycoside extracts were enzymatically hydrolyzed. The released aglycons were determined by headspace SPME. Of these compounds, six were not previously reported to belong to the tomato GBF. The c…

Glycoside HydrolasesSaccharomyces cerevisiaeBeveragesSolanum lycopersicumSpecies SpecificityEnzymatic hydrolysisGlycoside hydrolaseGlycosidesCultivarAromaLegumeCandidachemistry.chemical_classificationChromatographybiologyPlant ExtractsChemistryfungifood and beveragesGlycosideGeneral Chemistrybiology.organism_classificationFruitTasteOdorantsVolatilizationSolanumGeneral Agricultural and Biological SciencesSolanaceaeJournal of Agricultural and Food Chemistry
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