Title of article :
Modulation of Mucor miehei lipase properties via directed immobilization on different hetero-functional epoxy resins: Hydrolytic resolution of (R,S)-2-butyroyl-2-phenylacetic acid
Author/Authors :
Palomo، نويسنده , , Jose M and Muٌoz، نويسنده , , Gloria and Fernلndez-Lorente، نويسنده , , Gloria and Mateo، نويسنده , , Cesar and Fuentes، نويسنده , , Manuel and Guisan، نويسنده , , Jose M and Fernلndez-Lafuente، نويسنده , , Roberto، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
10
From page :
201
To page :
210
Abstract :
Purified lipase from Mucor miehei (MML) has been covalently immobilized on different epoxy resins (standard hydrophobic epoxy resins, epoxy-ethylenediamine, epoxy-iminodiacetic acid, epoxy-copper chelates) and adsorbed via interfacial activation on octadecyl-Sepabeads support (fully coated with very hydrophobic octadecyl groups). These immobilized enzyme preparations were used under slightly different conditions (temperature ranging from 4 to 25 °C and pH values from 5 to 7) in the hydrolytic resolution of (R,S)-2-butyroyl-2-phenylacetic acid. ent catalytic properties (activity, specificity, enantioselectivity) were found depending on the particular support used. For example, the epoxy-iminodiacetic acid-Sepabeads gave the most active preparation at pH 7 while, at pH 5, the ethylenediamine-Sepabeads was superior. nterestingly, the enantiomeric ratio (E) also depends strongly on the immobilized preparation and the conditions employed. Thus, the octadecyl-MML preparation was the only immobilized enzyme derivative which exhibited enantioselectivity towards R isomer (with E values ranging from 5 at 4 °C and pH 7 to 1.2 at pH 5 and 25 °C). her immobilized preparations, in contrast, were S selective. Immobilization on iminodiacetic acid-Sepabeads afforded the catalyst with the highest enantioselectivity (E=59 under optimum conditions).
Keywords :
Conformational engineering , Covalent immobilization , interfacial activation , Lipase enantioselectivity , (r , S)-2-Butyroyl-2-phenylacetic acid
Journal title :
Journal of Molecular Catalysis B Enzymatic
Serial Year :
2003
Journal title :
Journal of Molecular Catalysis B Enzymatic
Record number :
1709575
Link To Document :
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