Purification and characterisation of the water forming NADH-oxidase from Lactococcus lactis (original) (raw)

Comparison of Alkyl Hydroperoxide Reductase (AhpR) and Water-Forming NADH Oxidase fromLactococcus lactis ATCC 19435

Liang Wang

Advanced Synthesis & Catalysis, 2005

View PDFchevron_right

An improved method for the determination of NADH oxidase in the presence of NADH peroxidase in lactic acid bacteria

James Hourigan

Journal of …, 2003

View PDFchevron_right

Cofactor engineering: a novel approach to metabolic engineering in Lactococcus lactis by controlled expression of NADH oxidase

felix felipe

Journal of Bacteriology, 1998

View PDFchevron_right

Formation and Conversion of Oxygen Metabolites by Lactococcus lactis subsp. lactis ATCC 19435 under Different Growth Conditions

E. Van Niel

Applied and Environmental Microbiology, 2002

View PDFchevron_right

Effect of Different NADH Oxidase Levels on Glucose Metabolism by Lactococcus Lactis: Kinetics of Intracellular Metabolite Pools Determined by In Vivo Nuclear Magnetic …

Helena Santos

Applied and …, 2002

View PDFchevron_right

Effect of different NADH oxidase levels on glucose metabolism by Lactococus lactis : kinetics of intracellular metabolite pools determined by in vivo nuclear magnetic resonance

Ana Ramos

Applied and Environmental Microbiology, 2002

View PDFchevron_right

The Crystal Structure of NAD(P)H Oxidase from Lactobacillus sanfranciscensis: Insights into the Conversion of O2 into Two Water Molecules by the Flavoenzyme

Andreas Bommarius

Biochemistry, 2006

View PDFchevron_right

Pyruvate flux distribution in NADH-oxidase-overproducing Lactococcus lactis strain as a function of culture conditions

felix felipe

Fems Microbiology Letters, 1999

View PDFchevron_right

Effect of Different NADH Oxidase Levels on Glucose Metabolism by Lactococcus lactis : Kinetics of Intracellular Metabolite Pools Determined by In Vivo Nuclear Magnetic Resonance

Jeroen Hugenholtz

Applied and Environmental Microbiology, 2002

View PDFchevron_right

The role of NADH-oxidation in acetoin and diacetyl production from glucose in Lactococcus lactis subsp. lactis MG1363

felix felipe

Fems Microbiology Letters, 2006

View PDFchevron_right

Purification and characterization of an NADH oxidase from Eubacterium ramulus

Michael Blaut

Archives of Microbiology, 2002

View PDFchevron_right

Purification and characterization of the oxidase from the marine bacterium Pseudomonas nautica 617

Michel DENIS

European Journal of Biochemistry, 1991

View PDFchevron_right

Is the Glycolytic Flux In Lactococcus Lactis Primarily Controlled by the Redox Charge? Kinetics of NAD+ and NADH Pools Determined In Vivo by 13C-NMR

Ana Ramos

Journal of Biological …, 2002

View PDFchevron_right

NAD+-Dependent d-2-Hydroxyisocaproate Dehydrogenase of Lactobacillus Delbrueckii subsp. Bulgaricus. Gene Cloning and Enzyme Characterization

Pascal Hols

European Journal of Biochemistry, 1994

View PDFchevron_right

Glucose Metabolism of Lactic Acid Bacteria Changed by Quinone-mediated Extracellular Electron Transfer

健司 加納

Bioscience, Biotechnology, and Biochemistry, 2002

View PDFchevron_right

Cofactor Regeneration of both NAD+ from NADH and NADP+ from NADPH:NADH Oxidase from Lactobacillus sanfranciscensis

Andreas Bommarius

Advanced Synthesis & Catalysis, 2003

View PDFchevron_right

Characterization of a lactate oxidase from a strain of gram negative bacterium from soil

Hideyuki Suzuki

Applied Biochemistry and Biotechnology, 1996

View PDFchevron_right

NADH peroxidase plays a crucial role in consuming H2O2 in Lactobacillus casei IGM394

yasuko sasaki

Bioscience of Microbiota, Food and Health

View PDFchevron_right

Increasing the heme-dependent respiratory efficiency of Lactococcus lactis by inhibition of lactate dehydrogenase

Simone Guglielmetti

Applied and environmental microbiology, 2013

View PDFchevron_right

Is the Glycolytic Flux in Lactococcus lactis Primarily Controlled by the Redox Charge?

Ana Ramos

View PDFchevron_right

Mediated electron transfer of lactate oxidase and sarcosine oxidase with octacyanotungstate(iv) and octacyanomolybdate(iv)

Isao Taniguchi

Journal of Electroanalytical Chemistry and Interfacial Electrochemistry, 1988

View PDFchevron_right

Oxygen metabolism of catalase-negative and catalase-positive strains of Lactobacillus plantarum

Marvin Salin

Journal of bacteriology, 1975

View PDFchevron_right

Functional studies on crosslinked bovine cytochrome c oxidase

Joseph Bonaventura

FEBS Letters, 1978

View PDFchevron_right

Mathematical modelling of NADH oxidation catalyzed by new NADH oxidase from Lactobacillus brevis in continuously operated enzyme membrane reactor

Ana Vrsalovic Presecki

Journal of Bioscience and Bioengineering, 2007

View PDFchevron_right

A NAD(P)H Oxidase Isolated from the Archaeon Sulfolobus solfataricus Is Not Homologous with Another NADH Oxidase Present in the Same Microorganism. BIOCHEMICAL CHARACTERIZATION OF THE ENZYME AND CLONING OF THE ENCODING GENE

Paolo Arcari

Journal of Biological Chemistry, 2000

View PDFchevron_right

On the interpretation of quantitative structure-function activity relationship data for lactate oxidase

Bruce Palfey

Proceedings of the National Academy of Sciences, 2000

View PDFchevron_right