Hausmann Sascha, Wilhelm Susanne, Jaeger Karl-Erich, Rosenau Frank
Research Centre Juelich, Institute of Molecular Enzyme Technology, Heinrich-Heine-University Duesseldorf, Juelich, Germany.
FEMS Microbiol Lett. 2008 May;282(1):65-72. doi: 10.1111/j.1574-6968.2008.01107.x. Epub 2008 Mar 18.
Lipases are important biocatalysts used as detergent additives to manufacture biodiesel, and in particular, for the production of enantiopure compounds such as alcohols, amines and carboxylic acids. Extensive efforts were conducted trying to optimize lipase properties and lipase LipA of Pseudomonas aeruginosa comprises the best-studied example in terms of optimizing enantioselectivity by application of numerous directed evolution methods. Its enantioselectivity in the asymmetric hydrolysis of the model substrate 2-methyldecanoic acid p-nitrophenyl ester was increased from E=1.1 for the wild-type enzyme to E=51 for the best (S)-enantioselective variant which carried six amino acid exchanges. We have observed that overexpression of this variant in the homologous host resulted in only marginal yields of enzyme in the bacterial culture supernatant, suggesting that the enantioselective LipA variant was secreted with only low efficiency. Hence, we have analysed the secretion of this lipase variant and compared it to variants carrying either the respective single mutations or some combinations. We report here the identification of two amino acid substitutions located on the protein surface, which significantly impair lipase secretion.
脂肪酶是重要的生物催化剂,用作洗涤剂添加剂、制造生物柴油,特别是用于生产对映体纯的化合物,如醇、胺和羧酸。人们进行了大量努力来优化脂肪酶的性能,铜绿假单胞菌的脂肪酶LipA就是通过应用多种定向进化方法来优化对映选择性方面研究得最充分的例子。其在模型底物对硝基苯基2-甲基癸酸酯的不对称水解中的对映选择性从野生型酶的E=1.1提高到携带六个氨基酸置换的最佳(S)-对映选择性变体的E=51。我们观察到,该变体在同源宿主中的过表达导致细菌培养上清液中的酶产量仅为少量,这表明对映选择性LipA变体的分泌效率很低。因此,我们分析了这种脂肪酶变体的分泌情况,并将其与携带各自单个突变或某些组合的变体进行了比较。我们在此报告了位于蛋白质表面的两个氨基酸取代的鉴定结果,这两个取代显著损害了脂肪酶的分泌。