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ISSN print edition: 0366-6352
ISSN electronic edition: 1336-9075
Registr. No.: MK SR 9/7
Published monthly
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Immobilization of modified penicillin G acylase on Sepabeads carriers
Milena Žuža, Nenad Milosavić, and Zorica Knežević-Jugović
Department of Biochemical Engineering, Faculty of Technology and Metallurgy, University of Belgrade, Karnegijeva 4, 11000 Belgrade, Serbia
E-mail: milenazuza@yahoo.com
Received: 15 June 2008 Revised: 13 October 2008 Accepted: 20 October 2008
Abstract: An approach to stable covalent immobilization of chemically modified penicillin G acylase from Escherichia coli on Sepabeads® carriers with high retention of hydrolytic activity and thermal stability is presented. The two amino-activated
polymethacrylate particulate polymers with different spacer lengths used in the study were Sepabeads® EC EA and Sepabeads®
EC HA. The enzyme was first modified by cross-linking with polyaldehyde derivatives of starch in order to provide it with
new useful functions. Such modified enzyme was then covalently immobilized on amino supports. The method seems to provide
a possibility to couple the enzyme without risking a reaction at the active site which might cause the loss of activity. Performances
of these immobilized biocatalysts were compared with those obtained by the conventional method with respect to activity and
thermal stability. The thermal stability study shows that starch-PGA immobilized on Sepabeads EC-EA was almost 4.5-fold more
stable than the conventionally immobilized one and 7-fold more stable than free non-modified PGA. Similarly, starch-PGA immobilized
on Sepabeads EC-HA was around 1.5- fold more stable than the conventionally immobilized one and almost 9.5-fold more stable
than free non-modified enzyme.
Keywords: penicillin G acylase - modification - immobilization - Sepabeads carriers
Full paper is available at www.springerlink.com.
DOI: 10.2478/s11696-009-0012-z
Chemical Papers 63 (2) 117–124 (2009)
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