Lingen B, Grötzinger J, Kolter D, Kula M-R, Pohl M
Institut für Enzymtechnologie der Heinrich-Heine-Universität Düsseldorf, im Forschungszentrum Jülich, D-52426 Jülich, Germany.
Protein Eng. 2002 Jul;15(7):585-93. doi: 10.1093/protein/15.7.585.
Benzoylformate decarboxylase (BFD) from Pseudomonas putida was subjected to directed molecular evolution to generate mutants with increased carboligase activity which is a side reaction of the enzyme. After a single round of random mutagenesis mutants were isolated which exhibited a 5-fold increased carboligase activity in aqueous buffer compared to the wild-type enzyme with a high enantiomeric excess of the product (S)-2-hydroxy-1-phenyl-propanone. From the same library, mutants with enhanced carboligase activity in water-miscible organic solvents have been isolated. The selected mutants have been characterized by sequencing, revealing that all mutants carry a mutation at Leu476, which is close to the active site but does not directly interact with the active center. BFD-L476Q has a 5-fold higher carboligase activity than the wild-type enzyme. L476 was subjected to saturation mutagenesis yielding eight different mutants with up to 5-fold increased carboligase activity. Surprisingly, all L476 mutants catalyze the formation of 2-hydroxy-1-phenyl-propanone with significantly higher enantioselectivity than the wild-type enzyme although enantioselectivity was not a selection parameter. Leu476 potentially plays the role of a gatekeeper of the active site of BFD, possibly by controlling the release of the product. The biocatalyst could be significantly improved for its side reaction, the C-C bond formation and for application under conditions that are not optimized in nature.
对恶臭假单胞菌的苯甲酰甲酸脱羧酶(BFD)进行定向分子进化,以产生具有增强的羧化酶活性的突变体,羧化酶活性是该酶的一种副反应。经过一轮随机诱变后,分离出的突变体在水性缓冲液中表现出的羧化酶活性比野生型酶提高了5倍,且产物(S)-2-羟基-1-苯基丙酮具有高对映体过量。从同一个文库中,还分离出了在与水混溶的有机溶剂中具有增强的羧化酶活性的突变体。通过测序对所选突变体进行了表征,结果表明所有突变体在Leu476处都发生了突变,该位点靠近活性位点,但不直接与活性中心相互作用。BFD-L476Q的羧化酶活性比野生型酶高5倍。对Leu476进行饱和诱变,产生了八个不同的突变体,其羧化酶活性提高了5倍。令人惊讶的是,尽管对映选择性不是选择参数,但所有L476突变体催化形成2-羟基-1-苯基丙酮的对映选择性都明显高于野生型酶。Leu476可能起着BFD活性位点守门人的作用,可能是通过控制产物的释放来实现的。这种生物催化剂在其副反应、碳-碳键形成以及在非天然优化条件下的应用方面都可以得到显著改善。