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Iu Iu Kulis

Publications and source records attributed to Iu Iu Kulis.

4 recordsLinked to original sources

[Thermal stability of lactate dehydrogenase and alcohol dehydrogenase incorporated into highly concentrated gels].

The rate constants for inactivation of lactate dehydrogenase and alcohol dehydrogenase in solution at 65 degrees C (pH 7,5) are 0,72 and 0,013 min-1, respectively. The enzyme incorporation into acrylamide gels results in immobilized enzymes, whose residual activity is 18--25% of the original one. In 6,7% gels the rate of thermal inactivation for lactate dehydrogenase is decreased nearly 10-fold, whereas the inactivation rate for alcohol dehydrogenase is increased 4,6-fold as compared to the soluble enzymes. In 14% and 40% gels the inactivation constants for lactate dehydrogenase are 6,3.10(-3) and 5,9.10(-4) min-1, respectively. In 60% gels the thermal inactivation of lactate dehydrogenase is decelerated 3600-fold as compared to the native enzyme. The enthalpy and enthropy for the inactivation of the native enzyme are equal to 62,8 kcal/mole and 116,9 cal/(mole.grad.) for the native enzyme and those of gel-incorporated (6,7%) enzyme -- 38,7 kcal/mole and 42 cal/(mole.grad.), respectively. The thermal stability of alcohol dehydrogenase in 60% gels is increased 12-fold. To prevent gel swelling, methacrylic acid and allylamine were added to the matrix, with subsequent treatment by dicyclohexylcarbodiimide. The enzyme activity of the modified gels is 2,7--3% of that for the 6,7% gels. The stability of lactate dehydrogenase in such gels is significantly increased. A mechanism of stabilization of the subunit enzymes in highly concentrated gels is discussed.

Acrylamides

[Purification of phospholipase C from Bacillus cereus by chromatography on aminoalkylpolysaccharide adsorbents].

Purification of phospholipase C from Bac. cereus by chromatography on aminoalkylpolysaccharide adsorbents is described. The dependence of the degree of enzyme purification on the amount of ligant and effect of pH and buffer systems on the adsorption-desorption of phospholipase have been studied. At a pH below 9.0 phospholipase C is not retained by the adsorbents and is purified 4-5-fold and up to 23-fold, when aminoalkyl-Sepharose and hexamethylenediamine Sephadex are used respectively. With an increase in the pH value up to 10.0, the enzyme is bound by the adsorbent and is eluted with a 40-90% yield of activity and 7-10-fold purification. The resulting phospholipase C is highly purified and electrophoretically homogeneous. A mechanism of the enzyme-adsorbent interaction is discussed.

Adsorption

[Enzyme immobilization on hydrated oxides of transition metals and aluminum].

The immobilization of alpha-chymotrypsin, trypsin and invertase on hydrated oxides of tin, titanium and aluminium was investigated. The degree at which the enzymes were bound upon immobilization was 83.2-2.6%. The amount of bound proteins was 64.2 mg/g carrier. The specific activity of enzymes reached the highest level in the case of hydrated tin oxide and amounted to 76.8%, 49.9% and 99.6%, of activity of native alpha-chymotrypsin, trypsin and invertase, respectively. The thermal stability of immobilized proteases was considerably higher and that of immobilized invertase was significantly lower than that of native enzymes. The pH optimum of immobilized enzymes shifted by 0.6-2.6 units towards the alkaline region.

Aluminum

[Lactate oxidation by Hansenula anomala cells].

Lactate oxidation by freeze-dried cells of Hansenula anomala was studied in the presence of exogenous electron acceptors, potassium ferricyanide (PF) and phenazine metosulfate (PMS). The product of oxidation is pyruvate. The apparent Michaelis constants for lactate, PF and PMS are 1.2, 0.6 and 0.05, respectively. The pH optimum of lactate oxidation is 8.0. The freeze-dried cells of the yeast are inactivated by 5 mM bromopyruvate by 50% within 1.5 min. Treatment of the intact cells with ultrasound activates them. The respiratory function of the cells is characterized with a KM(app.) of 0.05 mM in the presence of lactate. PF has no effect on respiration. A scheme is proposed for lactate oxidation by the cells with damaged membranes whose amount after lyophilization is 10--20%.

Ascomycota