Institute of Technical Biochemistry, University of Stuttgart, Allmandring 31, 70569 Stuttgart, Germany.
J Biotechnol. 2010 Dec;150(4):474-80. doi: 10.1016/j.jbiotec.2010.09.951. Epub 2010 Sep 29.
Candida antarctica lipase B (CALB) is a widely used biocatalyst with high activity and specificity for a wide range of primary and secondary alcohols. However, the range of converted carboxylic acids is more narrow and mainly limited to unbranched fatty acids. To further broaden the biotechnological applications of CALB it is of interest to expand the range of converted carboxylic acid and extend it to carboxylic acids that are branched or substituted in close proximity of the carboxyl group. An in silico library of 2400 CALB variants was built and screened in silico by substrate-imprinted docking, a four step docking procedure. First, reaction intermediates of putative substrates are covalently docked into enzyme active sites. Second, the geometry of the resulting enzyme-substrate complex is optimized. Third, the substrate is removed from the complex and then docked again into the optimized structure. Fourth, the resulting substrate poses are rated by geometric filter criteria as productive or non-productive poses. Eleven enzyme variants resulting from the in silico screening were expressed in Escherichia coli BL21 and measured in the hydrolysis of two branched fatty acid esters, isononanoic acid ethyl ester and 2-ethyl hexanoic acid ethyl esters. Five variants showed an initial increase in activity. The variant with the highest wet mass activity (T138S) was purified and further characterized. It showed a 5-fold increase in hydrolysis of isononanoic acid ethyl ester, but not toward sterically more demanding 2-ethyl hexanoic acid ethyl ester.
南极假丝酵母脂肪酶 B(CALB)是一种广泛使用的生物催化剂,具有很高的活性和对各种伯醇和仲醇的特异性。然而,转化的羧酸范围较窄,主要限于直链脂肪酸。为了进一步拓宽 CALB 的生物技术应用,扩大转化羧酸的范围并将其扩展到靠近羧基的支链或取代的羧酸是很有意义的。构建了一个包含 2400 个 CALB 变体的虚拟文库,并通过底物印迹对接(四步对接程序)进行了虚拟筛选。首先,将假定底物的反应中间体共价对接进入酶活性位点。其次,优化所得酶-底物复合物的几何形状。第三,从复合物中除去底物,然后再次对接入优化的结构中。第四,根据几何筛选标准对所得底物构象进行评价,分为有产性和无产性构象。从虚拟筛选中得到的 11 种酶变体在大肠杆菌 BL21 中表达,并在两种支链脂肪酸酯(异壬酸乙酯和 2-乙基己酸乙酯)的水解中进行了测量。五种变体显示出初始活性增加。湿重活性最高的变体(T138S)被纯化并进一步表征。它对异壬酸乙酯的水解活性提高了 5 倍,但对空间位阻要求更高的 2-乙基己酸乙酯则没有。