Calcium alginate entrapment of the yeast Rhodosporidium toruloides for the kinetic resolution of 1,2-epoxyoctane

Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of racemic-1,2-epoxyoctane. The initial activity exhibited by immobilised cells was almost 50% lower than that of the free counterpart but was ext...

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Vydáno v:Biotechnology letters Ročník 25; číslo 20; s. 1775 - 1781
Hlavní autoři: Maritz, J., Krieg, H.M., Yeates, C.A., Botes, A.L., Breytenbach, J.C.
Médium: Journal Article
Jazyk:angličtina
Vydáno: Dordrecht Springer 01.10.2003
Springer Nature B.V
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ISSN:0141-5492, 1573-6776
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Abstract Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of racemic-1,2-epoxyoctane. The initial activity exhibited by immobilised cells was almost 50% lower than that of the free counterpart but was extremely stable when compared to the free cells. The concentration of the immobilised biomass had no effect on apparent enzyme activity but did lead to a decrease in single cell activity. An increase in both the alginate and CaCl2 concentrations used for bead preparation led to a decrease in enzyme stability. An increase in the alginate concentration led to an increase in bead diameter. The stoichiometric equation for cross-linking of alginate was only obeyed when CaCl2 concentrations higher than 0.4 M were utilised for bead preparation.
AbstractList Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of racemic-1,2-epoxyoctane. The initial activity exhibited by immobilised cells was almost 50% lower than that of the free counterpart but was extremely stable when compared to the free cells. The concentration of the immobilised biomass had no effect on apparent enzyme activity but did lead to a decrease in single cell activity. An increase in both the alginate and CaCl2 concentrations used for bead preparation led to a decrease in enzyme stability. An increase in the alginate concentration led to an increase in bead diameter. The stoichiometric equation for cross-linking of alginate was only obeyed when CaCl2 concentrations higher than 0.4 M were utilised for bead preparation.Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of racemic-1,2-epoxyoctane. The initial activity exhibited by immobilised cells was almost 50% lower than that of the free counterpart but was extremely stable when compared to the free cells. The concentration of the immobilised biomass had no effect on apparent enzyme activity but did lead to a decrease in single cell activity. An increase in both the alginate and CaCl2 concentrations used for bead preparation led to a decrease in enzyme stability. An increase in the alginate concentration led to an increase in bead diameter. The stoichiometric equation for cross-linking of alginate was only obeyed when CaCl2 concentrations higher than 0.4 M were utilised for bead preparation.
Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of racemic-1,2-epoxyoctane. The initial activity exhibited by immobilised cells was almost 50% lower than that of the free counterpart but was extremely stable when compared to the free cells. The concentration of the immobilised biomass had no effect on apparent enzyme activity but did lead to a decrease in single cell activity. An increase in both the alginate and CaCl sub(2) concentrations used for bead preparation led to a decrease in enzyme stability. An increase in the alginate concentration led to an increase in bead diameter. The stoichiometric equation for cross-linking of alginate was only obeyed when CaCl sub(2) concentrations higher than 0.4 M were utilised for bead preparation.
Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of racemic-1,2-epoxyoctane. The initial activity exhibited by immobilised cells was almost 50% lower than that of the free counterpart but was extremely stable when compared to the free cells. The concentration of the immobilised biomass had no effect on apparent enzyme activity but did lead to a decrease in single cell activity. An increase in both the alginate and CaCl^sub 2^ concentrations used for bead preparation led to a decrease in enzyme stability. An increase in the alginate concentration led to an increase in bead diameter. The stoichiometric equation for cross-linking of alginate was only obeyed when CaCl^sub 2^ concentrations higher than 0.4 M were utilised for bead preparation.[PUBLICATION ABSTRACT]
Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of racemic-1,2-epoxyoctane. The initial activity exhibited by immobilised cells was almost 50% lower than that of the free counterpart but was extremely stable when compared to the free cells. The concentration of the immobilised biomass had no effect on apparent enzyme activity but did lead to a decrease in single cell activity. An increase in both the alginate and CaCl2 concentrations used for bead preparation led to a decrease in enzyme stability. An increase in the alginate concentration led to an increase in bead diameter. The stoichiometric equation for cross-linking of alginate was only obeyed when CaCl2 concentrations higher than 0.4 M were utilised for bead preparation.
Author Breytenbach, J.C.
Botes, A.L.
Yeates, C.A.
Maritz, J.
Krieg, H.M.
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  surname: Breytenbach
  fullname: Breytenbach, J.C.
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Issue 20
Keywords Yeast
Calcium
Enzyme
Immobilization
Basidiomycetes
calcium alginate
Alginates
Epoxide hydrolase
Fungi
Ether hydrolases
immobilisation
Hydrolases
Kinetics
(R,S)-1,2- epoxyoctane
Thallophyta
Rhodosporidium toruloides
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Snippet Resting cells of the yeast Rhodosporidium toruloides (UOFS Y-0471) were immobilised in calcium alginate beads for the enantioselective kinetic resolution of...
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SubjectTerms 1,2-epoxyoctane
Alginates
Basidiomycota
Basidiomycota - growth & development
Basidiomycota - metabolism
Biological and medical sciences
Biotechnology
Calcium
calcium alginate
calcium chloride
Cell Culture Techniques
Cell Culture Techniques - methods
Cells, Immobilized
Cells, Immobilized - physiology
Enzymatic activity
Enzyme Activation
enzyme activity
Enzyme Stability
Enzymes
epoxide hydrolase
Epoxide Hydrolases
Epoxide Hydrolases - metabolism
Epoxy Compounds
Epoxy Compounds - metabolism
Extracellular Matrix
Extracellular Matrix - physiology
Fundamental and applied biological sciences. Psychology
Glucuronic Acid
Glucuronic Acid - physiology
growth & development
Hexuronic Acids
immobilized cells
Kinetics
metabolism
methods
Microspheres
Octanes
Octanes - metabolism
physiology
Rhodosporidium toruloides
Stereoisomerism
Yeasts
Title Calcium alginate entrapment of the yeast Rhodosporidium toruloides for the kinetic resolution of 1,2-epoxyoctane
URI https://www.ncbi.nlm.nih.gov/pubmed/14626425
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Volume 25
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