Activity and stability of chemically modified Candida antarctica lipase B adsorbed on solid supports

被引:33
作者
Koops, BC [1 ]
Papadimou, E [1 ]
Verheij, HM [1 ]
Slotboom, AJ [1 ]
Egmond, MR [1 ]
机构
[1] Univ Utrecht, Biomembrane Inst, Ctr Biomembranes & Lipid Enzymol, Dept Enzymol & Prot Engn, NL-3508 TB Utrecht, Netherlands
关键词
D O I
10.1007/s002530051593
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The effect of various covalent chemical modifications on the transesterification activity and stability of adsorbed lipase B from Candida antarctica (CALB) was studied in 2-butanone and o-xylene. CALB species modified with either polyethylene glycol 2000 monomethyl ether (MPEG), polyethylene glycol 300 mono-octyl ether (OPEG) or rt-octanol (OCT) were used in combination with a hydrophobic (Accurel) and a hydrophilic (Duolite) support. The thermostabilities of adsorbed CALB in both solvents, and that of free CALB in o-xylene were not influenced by the modifications. In contrast, the thermostability of free CALB in 2-butanone decreased 2.5-fold after MPEG modification and increased 1.5-fold after modification with OPEG and n-octanol, compared to that of native CALB. The activities of the native and modified CALB species were up to 9-fold higher after adsorption onto Accurel than those of the corresponding free enzymes. Adsorption of these enzyme species onto Duolite only resulted in a 2- to 3-fold increase in the activity of OPEG- and OCT-modified CALB. The modified CALB species adsorbed onto Accurel show similar or up to 2-fold lower activities than do native adsorbed CALB species, while 1.5- to 6-fold higher activities were found for modified CALB species adsorbed onto Duolite. We propose that hydrophobic modifiers induce conformational changes of CALB during adsorption on a hydrophobic support whereas all three modifiers protect CALB from structural alterations during adsorption onto a hydrophilic support.
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收藏
页码:791 / 796
页数:6
相关论文
共 14 条
[1]  
[Anonymous], [No title captured]
[2]   Immobilization of lipases on porous polypropylene: Reduction in esterification efficiency at low loading [J].
Bosley, JA ;
Peilow, AD .
JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY, 1997, 74 (02) :107-111
[3]  
BOSLEY JA, 1991, Patent No. 424130
[4]   DRIVING FORCES FOR ENZYME ADSORPTION AT SOLID-LIQUID INTERFACES .1. THE SERINE-PROTEASE SAVINASE [J].
DUINHOVEN, S ;
POORT, R ;
VANDERVOET, G ;
AGTEROF, WGM ;
NORDE, W ;
LYKLEMA, J .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1995, 170 (02) :340-350
[5]   GLOBULAR-PROTEINS AT SOLID-LIQUID INTERFACES [J].
HAYNES, CA ;
NORDE, W .
COLLOIDS AND SURFACES B-BIOINTERFACES, 1994, 2 (06) :517-566
[6]  
KLIBANOV A M, 1986, Chemtech, V16, P354
[7]  
KOOPS BC, 1999, IN PRESS ENZYME MICR
[8]   EFFECTS OF SORBITOL ADDITION ON THE ACTION OF FREE AND IMMOBILIZED HYDROLYTIC ENZYMES IN ORGANIC MEDIA [J].
TRIANTAFYLLOU, AO ;
WEHTJE, E ;
ADLERCREUTZ, P ;
MATTIASSON, B .
BIOTECHNOLOGY AND BIOENGINEERING, 1995, 45 (05) :406-414
[9]   LIPASES FROM DIFFERENT SOURCES VARY WIDELY IN DEPENDENCE OF CATALYTIC ACTIVITY ON WATER ACTIVITY [J].
VALIVETY, RH ;
HALLING, PJ ;
PEILOW, AD ;
MACRAE, AR .
BIOCHIMICA ET BIOPHYSICA ACTA, 1992, 1122 (02) :143-146
[10]  
Wangikar PP, 1996, BIOTECHNOL BIOENG, V50, P329