Search results for "Bacteria"

showing 10 items of 4919 documents

2-Oxoglutarate decarboxylase ofLeuconostoc oenos

1990

InLeuconostoc oenos, the typical organism of the malolactic fermentation of wine, a 2-oxoglutarate decarboxylase was detected. This inducible enzyme decarboxylates 2-oxoglutarate but not pyruvate. The resulting succinaldehydate is rapidly reduced to 4-hydroxybutyrate or oxidized to succinate in further reactions. 2-Oxoglutarate decarboxylase is thiamin-diphosphate-dependent; the pH optimum is at 5.3 and theK m value for 2-oxoglutarate is 1.8 mmol/L.

chemistry.chemical_classificationWinebiologyDecarboxylationfood and beveragesGeneral MedicineMetabolismbiology.organism_classificationMicrobiologyIn vitroEnzymeBiochemistrychemistryMalolactic fermentationFermentationBacteriaFolia Microbiologica
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Corrigendum to “Biomolecule-corona formation confers resistance of bacteria to nanoparticle-induced killing: Implications for the design of improved …

2020

chemistry.chemical_classificationbiologyChemistryBiomoleculeBiophysicsNanoparticleBioengineeringbiology.organism_classificationBiomaterialsCorona (optical phenomenon)Mechanics of MaterialsCeramics and CompositesBiophysicsBacteriaBiomaterials
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A49 LACTOBACILLI DEGRADE WHEAT AMYLASE TRYPSIN INHIBITORS (ATI) TO AMELIORATE GUT DYSFUNCTION INDUCED BY IMMUNOGENIC WHEAT PROTEINS

2019

BACKGROUND: Wheat-related disorders involve a wide spectrum of conditions, triggered by the ingestion of gluten-containing cereals. The induction of gluten-specific immune responses in celiac disease is well established. However, the contribution of gluten and/or non-gluten proteins in the generation of symptoms in other wheat-related disorders is controversial. Amylase trypsin inhibitors (ATIs) are pest-resistant molecules in modern wheat with TLR4-activating capacities. AIMS: We investigated the role of ATIs in the generation of gut barrier dysfunction and dysmotility in wild-type mice as well as in the severity of gluten-induced immunopathology in genetically predisposed mice. We also de…

chemistry.chemical_classificationbiologyChemistryDiet therapynutritional and metabolic diseasesPosters Of Distinctionbiology.organism_classificationTrypsinGlutenMicrobiologyImmune systemLactobacillusbiology.proteinmedicineAmylaseGliadinBacteriamedicine.drug
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Lactobacillus vini sp. nov., a wine lactic acid bacterium homofermentative for pentoses.

2006

Six strains with more than 99·5 % 16S rRNA gene sequence similarity, identical internal spacer region profiles and restriction analysis of the amplified 16S rRNA gene patterns were isolated from fermenting grape musts during independent studies carried out in France and Spain many years apart. Strains are Gram-positive, motile, facultatively anaerobic rods that do not exhibit catalase activity and have the ability to utilize pentose sugars (ribose and/or l-arabinose), although they are homofermentative bacteria. Strains ferment pentoses exclusively yielding lactic acid as the end product. A broad set of molecular techniques has been applied to characterize these strains and the results show…

chemistry.chemical_classificationbiologyGenotypePentosesfood and beveragesPentoseWineGeneral MedicineLactobacillaceaeRibosomal RNAbiology.organism_classification16S ribosomal RNAMicrobiologyLactic acidMicrobiologychemistry.chemical_compoundLactobacilluschemistryLactobacillusRNA Ribosomal 16SFermentationFermentationEcology Evolution Behavior and SystematicsBacteriaPhylogenyInternational journal of systematic and evolutionary microbiology
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Novel Sortase A Inhibitors to Counteract Gram-Positive Bacterial Biofilms

2019

Sortase A (SrtA) is a membrane enzyme responsible for the covalent anchoring of surface proteins on the cell wall of Gram-positive bacteria. Nowadays it is considered an interesting target for the development of new anti-infective drugs which aim to interfere with important Gram-positive virulence mechanisms. Along the years, we studied the anti-staphylococcal and anti-biofilm activity of some natural and synthetic polyhalogenated pyrrolic compounds, called pyrrolomycins. Some of them were active on Gram-positive pathogens at a μg/mL range of concentration (1.5-0.045 μg/mL) and showed a biofilm inhibition in the range of 50-80%. [1-3] In light of these encouraging results, herein we present…

chemistry.chemical_classificationbiologyGram-positive virulence mechanismsChemistrySortase ABiofilmlcsh:ASettore BIO/19 - Microbiologia Generalebiology.organism_classificationSettore CHIM/08 - Chimica FarmaceuticaCell wallAnti-infective drugsMembraneEnzymen/aSettore CHIM/03 - Chimica Generale E InorganicaCovalent bondSortase Amental disordersBiophysicslcsh:General WorksAnti-biofilm activityPyrrolomycinsBacteriaGramProceedings
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The dcuD (former yhcL ) gene product of Escherichia coli as a member of the DcuC family of C4-dicarboxylate carriers: lack of evident expression

1999

The dcuD gene (formerly yhcL) of Escherichia coli shows significant sequence similarity only to the dcuC gene of E. coli, which encodes a C4-dicarboxylate carrier (DcuC) that functions during anaerobic growth. Inactivation of dcuD had no effect on the growth of E. coli under a large number of conditions and led to no detectable changes in phenotype. Translational dcuD'-'lacZ gene fusions were not significantly expressed in the presence of dicarboxylates or monocarboxylates under oxic or anoxic conditions. Other potential substrates such as amino sugar derivatives, amino acids, and alpha-aspartyl dipeptides also did not lead to expression of dcuD. Changes in medium composition, pH, ionic str…

chemistry.chemical_classificationbiologyHypothetical proteinGeneral Medicinebiology.organism_classificationmedicine.disease_causeBiochemistryMicrobiologyEnterobacteriaceaeAmino acidGene productOpen reading frameBiochemistrychemistryGene expressionGeneticsmedicineMolecular BiologyEscherichia coliGeneArchives of Microbiology
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Inorganic Polyphosphate in Eukaryotes: Enzymes, Metabolism and Function

1999

Inorganic polyphosphates (polyP) are linear polymers of orthophosphate (Pi) residues linked by high-energy phosphoanhydride bonds. These polymers are widely distributed in nature, from archaebacteria, eubacteria, fungi, algae, and protozoa to higher plants and animals (for reviews, see Kulaev 1979; Wood and Clark 1988; Kornberg 1994, 1995). PolyP molecules are stable in neutral aqueous solutions, but are hydrolyzed by heat-treatment, and under acidic or alkaline conditions. The chain length of polyP may range from 3 to more than 1000 Pi residues; it can be analyzed on urea/polyacrylamide gels (Clark and Wood 1987; Lorenz et al. 1994a). In contrast to the linear polymer, branched inorganic p…

chemistry.chemical_classificationbiologyMicroorganismPolyphosphateMetabolismbiology.organism_classificationYeastPolyphosphate kinasechemistry.chemical_compoundEnzymeAlgaeBiochemistrychemistryBacteria
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Experimental evidence for proton motive force-dependent catalysis by the diheme-containing succinate:menaquinone oxidoreductase from the Gram-positiv…

2006

In Gram-positive bacteria and other prokaryotes containing succinate:menaquinone reductases, it has previously been shown that the succinate oxidase and succinate:menaquinone reductase activities are lost when the transmembrane electrochemical proton potential, Deltap, is abolished by the rupture of the bacteria or by the addition of a protonophore. It has been proposed that the endergonic reduction of menaquinone by succinate is driven by the electrochemical proton potential. Opposite sides of the cytoplasmic membrane were envisaged to be separately involved in the binding of protons upon the reduction of menaquinone and their release upon succinate oxidation, with the two reactions linked…

chemistry.chemical_classificationbiologyProtonophoreChemiosmosisSuccinic AcidProton-Motive ForceBacillusVitamin K 2HemeReductasebiology.organism_classificationBiochemistryRedoxCatalysisSuccinate DehydrogenaseEnzymeBiochemistrychemistryBacterial ProteinsFumaratesOxidoreductaseBacillus licheniformisOxidoreductasesOxidation-ReductionBacteriaBiochemistry
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Differential behaviour of Pseudomonas sp. 42A2 LipC, a lipase showing greater versatility than its counterpart LipA

2009

Abstract Growth of Pseudomonas sp. 42A2 on oleic acid releases polymerized hydroxy-fatty acids as a result of several enzymatic conversions that could involve one or more lipases. To test this hypothesis, the lipolytic system of strain Pseudomonas sp. 42A2 was analyzed, revealing the presence of at least an intracellular carboxylesterase and a secreted lipase. Consensus primers derived from a conserved region of bacterial lipase subfamilies I.1 and I.2 allowed isolation of two secreted lipase genes, lipA and lipC, highly homologous to those of Pseudomonas aeruginosa PAO1. Homologous cloning of the isolated lipA and lipC genes was performed in Pseudomonas sp. 42A2 for LipA and LipC over-expr…

chemistry.chemical_classificationbiologyStrain (chemistry)PseudomonasFatty acidLipaseGeneral Medicinebiology.organism_classificationBiochemistrySubstrate SpecificityIsoenzymesCarboxylesteraseOleic acidchemistry.chemical_compoundEnzymeBacterial ProteinschemistryBiochemistryPseudomonasEnzyme Stabilitybiology.proteinEnzyme kineticsLipaseBiochimie
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Succinate dehydrogenase functioning by a reverse redox loop mechanism and fumarate reductase in sulphate-reducing bacteria.

2006

Sulphate- or sulphur-reducing bacteria with known or draft genome sequences (Desulfovibrio vulgaris, Desulfovibrio desulfuricans G20, Desulfobacterium autotrophicum [draft], Desulfotalea psychrophila and Geobacter sulfurreducens) all contain sdhCAB or frdCAB gene clusters encoding succinate : quinone oxidoreductases. frdD or sdhD genes are missing. The presence and function of succinate dehydrogenase versus fumarate reductase was studied. Desulfovibrio desulfuricans (strain Essex 6) grew by fumarate respiration or by fumarate disproportionation, and contained fumarate reductase activity. Desulfovibrio vulgaris lacked fumarate respiration and contained succinate dehydrogenase activity. Succi…

chemistry.chemical_classificationbiologySulfatesSuccinate dehydrogenaseMolecular Sequence DataSuccinic AcidBacillus subtilisFumarate reductasebiology.organism_classificationMicrobiologySuccinate DehydrogenaseEnzymechemistryBiochemistryFumaratesMultigene Familybiology.proteinDesulfovibrioSDHDAmino Acid SequenceDesulfovibrio vulgarisGeobacter sulfurreducensOxidation-ReductionBacteriaMicrobiology (Reading, England)
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