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南极假丝酵母脂肪酶 B 的合理设计产生一种通用酯化催化剂。

Rational design of Pseudozyma antarctica lipase B yielding a general esterification catalyst.

机构信息

Institute of Technical Biochemistry, Universität Stuttgart, Allmandring 31, 70569 Stuttgart, Germany.

出版信息

Chembiochem. 2010 Apr 12;11(6):789-95. doi: 10.1002/cbic.200900776.

Abstract

Pseudozyma antarctica lipase B (CALB) shows activity in the acrylation of hydroxypropylcarbamate, a racemic mixture of enantiomers of primary and secondary alcohols. However, full conversion is hampered by the slowly reacting S enantiomer of the secondary alcohol. The same is true for a wide range of secondary alcohols, for example, octan-2- and -3-ol. In order to get high conversion in these reactions in a short time, the stereospecificity pocket of CALB was redesigned by using predictions from molecular modeling. Positions 278, 104, and 47 were targeted, and a library for two-site saturation mutagenesis at positions 104 and 278 was constructed. The library was then screened for hydrolysis of acrylated hydroxypropylcarbamates. The best mutants L278A, L278V, L278A/W104F, and L278A/W104F/S47A showed an increased conversion in hydrolysis and transesterification of more than 30 %. While the wild-type showed only 73 % conversion in the acrylation of hydroxypropylcarbamate after 6 h, 97 % conversion was achieved by L278A in this time. Besides this, L278A/W104F reached >96 % conversion in the acrylation of octan-2- and -3-ol within 48 h and showed a significant decrease in stereoselectivity, while the wild-type reached only 68 and 59 % conversion, respectively. Thus the new biocatalysts can be used for efficient transformation of racemic alcohols and esters with high activity when the high stereoselectivity of the wild-type hampers complete conversion of racemic substrates in a short time.

摘要

南极假丝酵母脂肪酶 B(CALB)在羟丙基氨基甲酸酯的丙烯酰化反应中表现出活性,羟丙基氨基甲酸酯是伯醇和仲醇的外消旋混合物。然而,由于仲醇的 S 对映体反应缓慢,完全转化受到阻碍。对于广泛的仲醇,例如辛烷-2-醇和辛烷-3-醇也是如此。为了在短时间内使这些反应获得高转化率,CALB 的立体特异性口袋通过分子建模的预测进行了重新设计。针对位置 278、104 和 47 进行了靶向,构建了针对位置 104 和 278 的双位点饱和突变文库。然后对文库进行了丙烯酰化羟丙基氨基甲酸酯水解的筛选。最好的突变体 L278A、L278V、L278A/W104F 和 L278A/W104F/S47A 在水解和转酯化中的转化率提高了 30%以上。而野生型在 6 小时内羟丙基氨基甲酸酯的丙烯酰化转化率仅为 73%,而 L278A 在这段时间内达到了 97%的转化率。此外,L278A/W104F 在 48 小时内达到了 >96%的转化率,并且立体选择性显著降低,而野生型的转化率分别为 68%和 59%。因此,当野生型的高立体选择性在短时间内阻碍外消旋底物的完全转化时,这些新型生物催化剂可用于高效转化外消旋醇和酯,具有高活性。

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