Search results for "3-Butanediol"

showing 4 items of 4 documents

Bacterial 2,3-butanediol dehydrogenases

1978

Enterobacter aerogenes, Aeromonas hydrophila, Serratia marcescens and Staphylococcus aureus possessing L(+)-butanediol dehydrogenase produced mainly meso-butanediol and small amounts of optically active butanediol; Acetobacter suboxydans, Bacillus polymyxa and Erwinia carotovora containing D(-)-butanediol dehydrogenase produced more optically active butanediol than meso-butanediol. Resting and growing cells of these organisms oxidezed only one enantiomer of racemic butanediol. The D(-)-butanediol dehydrogenase from Bacillus polymyxa was partially purified (30-fold) with a specific activity of 24.5. Except NAD and NADH no other cofactors were required. Optimum pH-values for oxidation and red…

Staphylococcus aureusEnterobacterBacillusDehydrogenaseBiologyEnterobacter aerogenesBiochemistryMicrobiologyCofactorchemistry.chemical_compoundGenetics23-ButanediolAcetobacterButylene GlycolsMolecular BiologySerratia marcescensChromatographyBacteriaCell-Free SystemAcetoinAcetoinTemperatureGeneral MedicineHydrogen-Ion Concentrationbiology.organism_classificationDiacetylAlcohol OxidoreductaseschemistryBiochemistryButanediolbiology.proteinErwiniaAeromonasNAD+ kinaseOxidation-ReductionArchives of Microbiology
researchProduct

Thermodynamic and Kinetic Modeling of Co-utilization of Glucose and Xylose for 2,3-BDO Production by Zymomonas mobilis

2021

Prior engineering of the ethanologen Zymomonas mobilis has enabled it to metabolize xylose and to produce 2,3-butanediol (2,3-BDO) as a dominant fermentation product. When co-fermenting with xylose, glucose is preferentially utilized, even though xylose metabolism generates ATP more efficiently during 2,3-BDO production on a BDO-mol basis. To gain a deeper understanding of Z. mobilis metabolism, we first estimated the kinetic parameters of the glucose facilitator protein of Z. mobilis by fitting a kinetic uptake model, which shows that the maximum transport capacity of glucose is seven times higher than that of xylose, and glucose is six times more affinitive to the transporter than xylose.…

Xylose isomeraseenzyme protein cost analysisHistologythermodynamics analysisBiomedical Engineeringkinetic modelsBioengineeringXyloseZymomonas mobilis03 medical and health scienceschemistry.chemical_compoundXylose metabolismbiofuel productionOriginal Research030304 developmental biology0303 health sciencesbiology030306 microbiologyZymomonas mobilisBioengineering and BiotechnologyMetabolismbiology.organism_classificationFlux balance analysisBiochemistrychemistry23-butanediolFermentationdynamic flux balance analysisFlux (metabolism)TP248.13-248.65BiotechnologyFrontiers in Bioengineering and Biotechnology
researchProduct

Protective action of 1,3-butanediol in cerebral ischemia. A neurologic, histologic, and metabolic study.

1987

1,3-Butanediol (BD) is converted in the body to β-hydroxybutyrate, and previous studies have shown that hyperketonemia had beneficial effects in experimental models of generalized hypoxia. The aim of this study was to determine if BD would reduce brain damage following cerebral ischemia. A transient forebrain ischemia of 30-min duration was induced by the four-vessel occlusion technique in control and BD-treated rats (25 mmol/kg, i.p.; 30 min prior to ischemia). BD treatment led to significant improvement of neurologic deficit during the 72-h recovery period and reduced neuronal damage in the striatum and cortex but not in the CA1 sector of the hippocampus. Evaluation of cerebral energy me…

Blood GlucoseMalemedicine.medical_specialtyIschemiaHydroxybutyratesBlood PressureBrain damageHippocampusPhosphocreatinechemistry.chemical_compoundInternal medicinemedicine13-ButanediolAnimalsEnergy chargeButylene GlycolsCerebral CortexNeurons3-Hydroxybutyric Acidbusiness.industryBrainHypoxia (medical)medicine.diseaseCorpus StriatumRatsEndocrinologyNeurologychemistryIschemic Attack TransientLactic acidosisKetone bodiesNeurology (clinical)medicine.symptomCardiology and Cardiovascular MedicinebusinessEnergy MetabolismJournal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism
researchProduct

Novel biocatalysts for glycerol conversion into 2,3-butanediol

2016

Abstract Bioconversion of biodiesel-derived waste glycerol into high-value products is proposed as a solution to improve economic viability of biorefineries. Several microorganisms are able to metabolize glycerol into 2,3-butanediol (2,3-BD), a promising bulk chemical with wide applications: solvent, fuel additive, and feedstock for synthetic rubber production, among them. In the present work, a wide screening of microorganisms present both into the waste water treatment system in a biodiesel industry and in culture collections was carried out in order to evaluate their potential as new 2,3-BD producer biocatalysts. Two microorganisms for 2,3-BD production from glycerol as sole carbon sourc…

0106 biological sciences0301 basic medicineBiodieselbiologyBioconversionBioengineeringRaoultella terrigenaPulp and paper industrybiology.organism_classification01 natural sciencesApplied Microbiology and BiotechnologyBiochemistryRaoultella planticola03 medical and health scienceschemistry.chemical_compound030104 developmental biologyRaoultellachemistryBiochemistry010608 biotechnology23-ButanediolGlycerolYeast extractProcess Biochemistry
researchProduct