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Biotechnol Prog ; 23(3): 638-44, 2007.
Article in English | MEDLINE | ID: mdl-17461550

ABSTRACT

An Escherichia coli catalyst with tyrosine ammonia lyase activity (TAL) has been stabilized for repeated use in batch conversions of high tyrosine solids to p-hydroxycinnamic acid (pHCA). The TAL biocatalyst was stabilized by controlling the reaction pH to 9.8 +/- 0.1 and immobilizing the cells within a calcium alginate matrix that was cross-linked with glutaraldehyde and polyethyleneimine (GA/PEI). We found a GA range where the bead-encapsulated TAL was not inactivated, and the resulting cross-linking provided the beads with the mechanical stability necessary for repeated use in consecutive batch reactions with catalyst recycle. The GA/PEI calcium alginate TAL catalyst was used in 41 1-L batch reactions where 50 g L(-1) tyrosine was converted to 39 +/- 4 g L(-1) pHCA in each batch. The practical usefulness and ease of this process was demonstrated by scaling up the TAL bead immobilization and using the immobilized TAL catalyst in four 125-L bioconversion reactions to produce over 12 kg of purified pHCA.


Subject(s)
Alginates/chemistry , Ammonia-Lyases/metabolism , Coumaric Acids/metabolism , Microspheres , Cells, Immobilized/drug effects , Cells, Immobilized/enzymology , Cells, Immobilized/metabolism , Enzyme Stability , Glucuronic Acid/chemistry , Glutaral/chemistry , Hexuronic Acids/chemistry , Hydrogen-Ion Concentration , Molecular Structure , Phenols/chemistry , Polyethyleneimine/chemistry , Temperature , Tyrosine/chemistry , Tyrosine/metabolism
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