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通过对南极假丝酵母脂肪酶B进行合理重新设计为大型仲醇创造空间。

Creating space for large secondary alcohols by rational redesign of Candida antarctica lipase B.

作者信息

Magnusson Anders O, Rotticci-Mulder Johanna C, Santagostino Alberto, Hult Karl

机构信息

Department of Biotechnology, Royal Institute of Technology, 10691 Stockholm, Sweden.

出版信息

Chembiochem. 2005 Jun;6(6):1051-6. doi: 10.1002/cbic.200400410.

Abstract

The active site of Candida antarctica lipase B (CALB) hosts the catalytic triad (Ser-His-Asp), an oxyanion hole and a stereospecificity pocket. During catalysis, the fast-reacting enantiomer of secondary alcohols places its medium-sized substituent in the stereospecificity pocket and its large substituent towards the active-site entrance. The largest group to fit comfortably in the stereospecificity pocket is ethyl, and this restricts the number of secondary alcohols that are good substrates for CALB. In order to overcome this limitation, the size of the stereospecificity pocket was redesigned by changing Trp104. The substrate specificity of the Trp104Ala mutant compared to that of the wild-type lipase increased 270 times towards heptan-4-ol and 5500 times towards nonan-5-ol; this resulted in the high specificity constants 1100 and 830 s(-1) M(-1), respectively. The substrate selectivity changed over 400,000 times for nonan-5-ol over propan-2-ol with both Trp104Ala and the Trp104Gln mutations.

摘要

南极假丝酵母脂肪酶B(CALB)的活性位点包含催化三联体(丝氨酸-组氨酸-天冬氨酸)、一个氧负离子洞和一个立体特异性口袋。在催化过程中,仲醇的快速反应对映体将其中等大小的取代基置于立体特异性口袋中,而其大取代基则朝向活性位点入口。能舒适地适配于立体特异性口袋中的最大基团是乙基,这限制了作为CALB良好底物的仲醇数量。为克服这一限制,通过改变色氨酸104对立体特异性口袋的大小进行了重新设计。与野生型脂肪酶相比,色氨酸104丙氨酸突变体对4-庚醇的底物特异性提高了270倍,对5-壬醇的底物特异性提高了5500倍;这分别导致了高特异性常数1100和830 s(-1) M(-1)。对于5-壬醇相对于2-丙醇的底物选择性,色氨酸104丙氨酸突变体和色氨酸104谷氨酰胺突变体的变化均超过400,000倍。

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