Enantioselectivity of lipase catalyzed transesterification between tributyrylglycerol and 2-octanol in organic solvents

被引:2
作者
Hirata, H [1 ]
Miyagishi, M [1 ]
Mayama, M [1 ]
机构
[1] Hokkaido Tokai Univ, Dept Biosci & Technol, Sch Engn, Minami Ku, Sapporo, Hokkaido 005, Japan
关键词
D O I
10.1246/nikkashi.1998.113
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Pseudomonas cepacia lipase (PCL) catalyzed transesterification between tributyrylglycerol (1) and 2-octanol (2) to give (R)-1-methylheptyl butyrate (3) has been studied using eight kinds of organic solvents at 10-70 degrees C. The enantioselectivity expressed as log E (where E is the enantiomeric ratio) was negatively correlated with the solvent hydrophobicity log P (where P is a partition coefficient of a given solvent between octanol and water) except bulky solvents, in which the log E values were smaller than those expected from log P. The log E against log P plot was varied by the reaction temperature (T). The enantioselectivity increased with T for the reaction in the bulky solvents, was independent of T in heptane, and decreased in the others. Activation parameters (Delta Delta H-double dagger and Delta Delta S-double dagger) were determined using a linear correlation between Delta Delta G(double dagger) (= -RT In E) and T. The Delta Delta H-double dagger values were negative for the reactions in the bulky solvents and positive in the others, and the Delta Delta S-double dagger values in the former were larger than those in the latter. From the above findings, it was concluded that the enantioselectivity was affected by a combination of the nature and structures of the solvent and the reaction temperature. A plausible active site model of PCL was proposed and discussed.
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页码:113 / 118
页数:6
相关论文
共 23 条
[11]   PARTITION COEFFICIENTS AND THEIR USES [J].
LEO, A ;
HANSCH, C ;
ELKINS, D .
CHEMICAL REVIEWS, 1971, 71 (06) :525-+
[12]   EFFECT OF SOLVENT STRUCTURE OF ENANTIOSELECTIVITY OF LIPASE-CATALYZED TRANSESTERIFICATION [J].
NAKAMURA, K ;
TAKEBE, Y ;
KITAYAMA, T ;
OHNO, A .
TETRAHEDRON LETTERS, 1991, 32 (37) :4941-4944
[13]   TAILORING LIPASE SPECIFICITY BY SOLVENT AND SUBSTRATE CHEMISTRIES [J].
PARIDA, S ;
DORDICK, JS .
JOURNAL OF ORGANIC CHEMISTRY, 1993, 58 (12) :3238-3244
[14]   SUBSTRATE STRUCTURE AND SOLVENT HYDROPHOBICITY CONTROL LIPASE CATALYSIS AND ENANTIOSELECTIVITY IN ORGANIC MEDIA [J].
PARIDA, S ;
DORDICK, JS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1991, 113 (06) :2253-2259
[15]   TEMPERATURE-DEPENDENT ENANTIOSPECIFICITY OF SECONDARY ALCOHOL-DEHYDROGENASE FROM THERMOANAEROBACTER-ETHANOLICUS [J].
PHAM, VT ;
PHILLIPS, RS ;
LJUNGDAHL, LG .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1989, 111 (05) :1935-1936
[16]  
REKKER RF, 1977, PHARMACOCHEMISTRY LI, V1
[17]  
RIDDICK JA, 1970, ORG SOLVENTS, V4, P552
[18]   SEPARATION OF SECONDARY ALCOHOL ENANTIOMERS USING SUPERCRITICAL FLUID CHROMATOGRAPHY [J].
SAKAKI, K ;
HIRATA, H .
JOURNAL OF CHROMATOGRAPHY, 1991, 585 (01) :117-122
[19]  
SAKURAI S, 1992, J AM CHEM SOC, V114, P1882
[20]   CONTROL OF ENZYME ENANTIOSELECTIVITY BY THE REACTION MEDIUM [J].
SAKURAI, T ;
MARGOLIN, AL ;
RUSSELL, AJ ;
KLIBANOV, AM .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (21) :7236-7237