Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Purification and properties of a malolactic enzyme from Leuconostoc oenos ATCC 23278

View through CrossRef
AbstractThe malolactic enzyme of Leuconostoc ocnos ATCC 23278 was purified 136fold. The molecular weight was estimated at 132,000 when determined by gel filtration. The enzyme contained two identical subunits (Mw = 66,000 using sodium dodecyl sulfate gel electrophoresis). The malolactic enzyme catalyzes the NAD+‐ and Mn+‐dependent reaction L‐malate → L‐lactate + CO2. The apparent Km values for malic acid, NAD+, and Mn2+ were 17 mM, 0.044 mM, and 0.017 mM, respectively. The optimal pH and the optimal temperature for activity were 5.0, and 37 °C, respectively and the isoelectric point was pH 4.30. L‐lactate and ethanol were non‐competitive inhibitors, whereas succinate, citrate, and D‐tartrate showed competitive type inhibitions.
Title: Purification and properties of a malolactic enzyme from Leuconostoc oenos ATCC 23278
Description:
AbstractThe malolactic enzyme of Leuconostoc ocnos ATCC 23278 was purified 136fold.
The molecular weight was estimated at 132,000 when determined by gel filtration.
The enzyme contained two identical subunits (Mw = 66,000 using sodium dodecyl sulfate gel electrophoresis).
The malolactic enzyme catalyzes the NAD+‐ and Mn+‐dependent reaction L‐malate → L‐lactate + CO2.
The apparent Km values for malic acid, NAD+, and Mn2+ were 17 mM, 0.
044 mM, and 0.
017 mM, respectively.
The optimal pH and the optimal temperature for activity were 5.
0, and 37 °C, respectively and the isoelectric point was pH 4.
30.
L‐lactate and ethanol were non‐competitive inhibitors, whereas succinate, citrate, and D‐tartrate showed competitive type inhibitions.

Related Results

Biochemical basis for glucose-induced inhibition of malolactic fermentation in Leuconostoc oenos
Biochemical basis for glucose-induced inhibition of malolactic fermentation in Leuconostoc oenos
The sugar-induced inhibition of malolactic fermentation in cell suspensions of Leuconostoc oenos, recently reclassified as Oenococcus oeni (L. M. T. Dicks, F. Dellaglio, and M. D. ...
Determination of Antimicrobial Activity of Extracts of Indigenous Wild Mushrooms against Pathogenic Organisms
Determination of Antimicrobial Activity of Extracts of Indigenous Wild Mushrooms against Pathogenic Organisms
Objective. This study has investigated the antimicrobial activity of extracts of indigenous wild mushrooms against selected organisms. Methods. Thirty-five (35) indigenous wild mus...
Lectin C gene analysis v1
Lectin C gene analysis v1
Mammalian Tissue Total RNA Purification Protocol by GeneJET RNA Purification Kit (Thermo Scientific, USA) Before starting: • Supplement the required amount of Lysis Buffer with β-...
The oenological interest of fumaric acid: Stop malolactic fermentation and preserve the freshness of wines
The oenological interest of fumaric acid: Stop malolactic fermentation and preserve the freshness of wines
One of the problems related to the increase in average temperatures in the wine-growing regions is the lower accumulation of organic acids in the berries. Wine freshness depends to...
New Malolactic Bacteria Strains Isolated from Wine Microbiota: Characterization and Technological Properties
New Malolactic Bacteria Strains Isolated from Wine Microbiota: Characterization and Technological Properties
Malolactic fermentation (MLF) or biological decrease of wine acidity is defined as the enzymatic bioconversion of malic acid in lactic acid, a process performed by lactic acid bact...
EVALUATION OF ANTIMICROBIAL ACTIVITY OF ETHANOLIC EXTRACT DERIVED FROM LEAVES OF FICUS CYATHISTIPULA WARB. (MORACEAE)
EVALUATION OF ANTIMICROBIAL ACTIVITY OF ETHANOLIC EXTRACT DERIVED FROM LEAVES OF FICUS CYATHISTIPULA WARB. (MORACEAE)
Purpose: We continue our investigations regarding assessing the antibacterial and antioxidant properties of extracts derived from the leaves of various plants belonging to the Ficu...

Back to Top