Immobilization of fuculose-1-phosphate aldolase from E. coli to glyoxal-agarose gels by multipoint covalent attachment

Recombinant fuculose 1-phosphate aldolase (FucA) from E. coli has been immobilized by multipoint covalent attachment to glyoxal-agarose gels. Experiments, varying the main parameters that control the immobilization process (surface density of aldehyde groups, temperature, pH), were carried out. An i...

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Veröffentlicht in:Biocatalysis and biotransformation 2005-01, Vol.23 (3-4), p.241-250
Hauptverfasser: Suau, Trinitat, Calveras, Jordi, Clapés, Pere, Dolors Benaiges, Maria, Álvaro, Gregorio
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Sprache:eng
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Zusammenfassung:Recombinant fuculose 1-phosphate aldolase (FucA) from E. coli has been immobilized by multipoint covalent attachment to glyoxal-agarose gels. Experiments, varying the main parameters that control the immobilization process (surface density of aldehyde groups, temperature, pH), were carried out. An immobilization yield of 80-90% and FucA retained activity on immobilized derivative of 10-20% can be achieved when pH 10, 20°C and 200 µmoles cm−3 of aldehyde groups was used. The observed activity loss in the immobilization process might be related to the fact that the complex quaternary structure of the enzyme could not be maintained. A short contact-time enzyme support is required to obtain high ratio of active to total immobilized enzyme. A highly loaded derivative of immobilized FucA (65 AU cm−3 of support) has been prepared to use in aldol condensation reactions. Reactions catalyzed by these aldolases involve the use of non-conventional media because of substrate solubility. For instance, the condensation of dihydroxyacetone phosphate (DHAP) and Z-amino-propanal, Z-(R)-alaninal and Z-(S)- alaninal in highly concentrated water-in-oil emulsions gave synthetic yields of 40, 25 and 29% respectively.
ISSN:1024-2422
1029-2446
DOI:10.1080/10242420500208720