Search results for "Uridine Diphosphate Glucose"

showing 5 items of 5 documents

Formation of mono- and diglucuronides and other glycosides of benzo(a)pyrene-3,6-quinol by V79 cell-expressed human phenol UDP-glucuronosyltransferas…

1995

Glucuronidation of quinols of polycyclic aromatic hydrocarbons (PAHs) represents an important detoxication pathway preventing toxic quinone/quinol redox cycles. Therefore, mono- and diglucuronide formation of benzo(a)pyrene-3,6-quinol was investigated and compared to that of structurally related 3,6-dihydroxychrysene and simple phenols (1-naphthol and 4-methylumbelliferone) using V79 cell-expressed human UGT1.6 (= P1) and human UGT1.7 (= P4). Properties of human UGT1.6 were compared to those of the rat ortholog. Cofactors related to UDP-glucuronic acid such as UDP-galacturonic acid and UDP-glucose were also studied. It was found that rat and human UGT1.6 and human UGT1.7 catalyse monoglucur…

MaleUridine Diphosphate GlucoseGlucuronosyltransferaseStereochemistryGlucuronidationGlucuronatesmacromolecular substancesBiochemistryIsozymeSubstrate Specificitychemistry.chemical_compoundGlucosidesAnimalsHumansPhenolsBenzopyrenesGlucuronosyltransferaseRats WistarCarcinogenPharmacologychemistry.chemical_classificationbiologyGlycosideHydroquinonesRatsQuinonechemistryBenzo(a)pyreneBiochemistryUridine Diphosphate Glucuronic Acidbiology.proteinBiochemical Pharmacology
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Cellular UDP-Glucose Deficiency Caused by a Single Point Mutation in the UDP-Glucose Pyrophosphorylase Gene

1997

We previously isolated a mutant cell that is the only mammalian cell reported to have a persistently low level of UDP-glucose. In this work we obtained a spontaneous revertant whose UDP-glucose level lies between those found in the wild type and the mutant cell. The activity of UDP-glucose pyrophosphorylase (UDPG:PP), the enzyme that catalyzes the formation of UDP-glucose, was in the mutant 4% and in the revertant 56% of the activity found in the wild type cell. Sequence analysis of UDPG: PP cDNAs from the mutant cell showed one missense mutation, which changes amino acid residue 115 from glycine to aspartic acid. The substituted glycine is located within the largest stretch of strictly con…

Uridine Diphosphate GlucoseDNA ComplementaryMagnetic Resonance SpectroscopyUTP-Glucose-1-Phosphate UridylyltransferaseMolecular Sequence DataMutantDeoxyglucoseBiologymedicine.disease_causeBiochemistryProtein Structure SecondaryCell LineCricetulusCricetinaeAspartic acidmedicineAnimalsPoint MutationMissense mutationAmino Acid SequenceMolecular Biologychemistry.chemical_classificationMutationSequence Homology Amino AcidPoint mutationWild typeCell BiologyMolecular biologyEnzymeBiochemistrychemistryGlycineJournal of Biological Chemistry
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High yielding one-pot enzyme-catalyzed synthesis of UDP-glucose in gram scales

2001

Abstract Uridine diphosphoglucose is an important cofactor of glucosylating enzymes. A simple and high yielding one-pot enzymatic synthesis of UDPG on a gram scale from glucose via hexokinase, phosphoglucomutase and UDPG pyrophosphorylase (UGPase) is described. Repetitive addition of substrate was used to avoid inhibition of UGPase. The approach allows recovery of active enzymes and their re-use. The synthesis of UDP-[4-13C]-glucose on a 0.5 g scale resulted in a final yield of 70% and a purity of >95% after chromatographic purification.

Uridine Diphosphate GlucoseMagnetic Resonance SpectroscopyUTP-Glucose-1-Phosphate UridylyltransferaseBiochemistryHigh yieldingCatalysisCofactorAnalytical Chemistrychemistry.chemical_compoundHexokinaseCarbon RadioisotopesGramchemistry.chemical_classificationHexokinaseChromatographyMolecular StructurebiologyOrganic ChemistrySubstrate (chemistry)General MedicineGlucoseEnzymePhosphoglucomutasechemistryBiochemistryYield (chemistry)biology.proteinPhosphoglucomutaseCarbohydrate Research
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UDP-glucose deficiency in a mutant cell line protects against glucosyltransferase toxins from Clostridium difficile and Clostridium sordellii.

1996

Abstract We have previously isolated a fibroblast mutant cell with high resistance to the two Rho-modifying glucosyltransferase toxins A and B of Clostridium difficile. We demonstrate here a low level of UDP-glucose in the mutant, which explains its toxin resistance since: (i) to obtain a detectable toxin B-mediated Rho modification in lysates of mutant cells, addition of UDP-glucose was required, and it promoted the Rho modification dose-dependently; (ii) high pressure liquid chromatography analysis of nucleotide extracts of cells indicated that the level of UDP-glucose in the mutant (0.8 nmol/106 cells) was lower than in the wild type (3.7 nmol/106 cells); and (iii) sensitivity to toxin B…

Uridine Diphosphate GlucoseMicroinjectionsMutantBacterial ToxinsClostridium difficile toxin AClostridium sordelliiClostridium difficile toxin Bmedicine.disease_causeBiochemistryMicrobiologyCell LineCricetulusBacterial ProteinsGTP-Binding ProteinsCricetinaemedicineAnimalsMolecular BiologyClostridiumbiologyToxinClostridioides difficileWild typeCell BiologyClostridium difficilebiology.organism_classificationGlucosyltransferasesMutationbiology.proteinGlucosyltransferaseThe Journal of biological chemistry
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Ras, Rap, and Rac Small GTP-binding Proteins Are Targets for Clostridium sordellii Lethal Toxin Glucosylation

1996

Lethal toxin (LT) from Clostridium sordellii is one of the high molecular mass clostridial cytotoxins. On cultured cells, it causes a rounding of cell bodies and a disruption of actin stress fibers. We demonstrate that LT is a glucosyltransferase that uses UDP-Glc as a cofactor to covalently modify 21-kDa proteins both in vitro and in vivo. LT glucosylates Ras, Rap, and Rac. In Ras, threonine at position 35 was identified as the target amino acid glucosylated by LT. Other related members of the Ras GTPase superfamily, including RhoA, Cdc42, and Rab6, were not modified by LT. Incubation of serum-starved Swiss 3T3 cells with LT prevents the epidermal growth factor-induced phosphorylation of m…

ThreonineUridine Diphosphate GlucoseRHOABacterial ToxinsMolecular Sequence DataClostridium sordelliimacromolecular substancesCDC42GTPaseBiologyCell morphologyBiochemistryGTP PhosphohydrolasesProto-Oncogene Proteins p21(ras)MiceGTP-binding protein regulatorsGTP-Binding ProteinsAnimalsHumansAmino Acid SequenceMolecular BiologyClostridiumEpidermal Growth FactorKinase3T3 CellsCell Biologybiology.organism_classificationMolecular biologyActinsrac GTP-Binding ProteinsActin CytoskeletonKineticsGlucoserap GTP-Binding ProteinsGlucosyltransferasesCalcium-Calmodulin-Dependent Protein Kinasesbiology.proteinPhosphorylationGuanosine TriphosphateHeLa CellsJournal of Biological Chemistry
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