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1.
Appl Biochem Biotechnol ; 168(3): 672-80, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22843062

ABSTRACT

In this study, the production and optimization of extracellular lipase from Kluyveromyces marxianus IFO 0288 was investigated by using optimized nutritional and cultural conditions in a yeast medium containing glucose as the carbon source in fully aerobic batch fermentation (150 rpm). The influence of four fermentation parameters (type of lipidic source, initial culture pH, temperature, and length of fermentation) on growth and lipase production was investigated and evaluated using the conventional "one variable at a time" approach and response surface methodology. An 18-fold increase in lipase production during 65 h of fermentation was obtained with optimized nutritional (0.5 % olive oil) and cultivation (pH 6.5, 35 °C) conditions by employing the conventional optimization method. By applying the response surface methodology technique the initial pH value of 6.4 and temperature of 32.5 °C were identified as optimal and led to further improvements (up to 18-fold) of extracellular lipase production. The results provide, for the first time, evidence that K. marxianus has the potential to be used as an efficient producer of extracellular lipase with prospective application in a variety of industrial and biotechnological areas.


Subject(s)
Culture Techniques/methods , Fungal Proteins/biosynthesis , Kluyveromyces/enzymology , Lipase/biosynthesis , Culture Media/metabolism , Fermentation , Hydrogen-Ion Concentration , Kluyveromyces/metabolism , Temperature
2.
Bioresour Technol ; 99(13): 5804-13, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18032033

ABSTRACT

Two thermophilic extracellular proteases, designated Lmm-protease-Lh ( approximately 29 kDa) and Hmm-protease-Lh ( approximately 62 kDa), were purified from the Lactobacillus helveticus from kefir, and found active in media containing dithiothreitol; the activity of Lmm-protease-Lh was increased significantly in media containing also EDTAK(2). Both novel proteases maintained full activity at 60 degrees C after 1-h incubation at 10 degrees C as well as at 80 degrees C, showing optimum k(cat)/K(m) values at pH 7.00 and 60 degrees C. Only irreversible inhibitors specific for cysteine proteinases strongly inhibited the activity of both novel enzymes, while they remained unaffected by irreversible inhibitors specific for serine proteinases. Both enzymes hydrolyzed the substrate Suc-FR-pNA via Michaelis-Menten kinetics; conversely, the substrate Cbz-FR-pNA was hydrolyzed by Lmm-protease-Lh via Michaelis-Menten kinetics and by Hmm-protease-Lh via substrate inhibition kinetics. Valuable rate constants and activation energies were estimated from the temperature-(k(cat)/K(m)) profiles of both enzymes, and useful results were obtained from the effect of different metallic ions on their Michaelis-Menten parameters.


Subject(s)
Cultured Milk Products/microbiology , Lactobacillus helveticus/enzymology , Peptide Hydrolases/metabolism , Bacterial Proteins/isolation & purification , Bacterial Proteins/metabolism , Hydrogen-Ion Concentration , Lactobacillus helveticus/isolation & purification , Molecular Weight , Peptide Hydrolases/isolation & purification , Substrate Specificity
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