Palomo Jose M
Institute of Catalysis (CSIC), Madrid, Spain.
Methods Enzymol. 2017;590:305-316. doi: 10.1016/bs.mie.2017.01.001. Epub 2017 Feb 8.
This chapter describes the rational design and synthesis of semisynthetic lipases by site-directed incorporation of tailor-made peptides on the lipase-lid site to improve its activity, specificity, and enantioselectivity in specific biotransformations. Cysteine was genetically introduced at a particular point of the oligopeptide lid of the enzyme, and cysteine-containing peptides, complementary to the amino acid sequence on the lid site of Geobacillus thermocatenulatus lipase (BTL), were covalently attached on the lid of two different cysteine-BTL variants based on a fast thiol-disulfide exchange ligation followed by desulfurization. The BTL variants were initially immobilized on solid support to introduce the advantages of solid-state chemistry, such as quantitative transformations, easy purification, and recyclability. In the two different immobilized variants BTL-A193C and BTL-L230C, the cysteine was then activated with 2-dipyridyldisulfide to help the disulfide exchange with the peptide, generating the semisynthetic enzyme in high yield. Excellent results of improvement of activity and selectivity were obtained. For example, the peptide-BTL conjugate (at position 193) was 40-fold more active than the corresponding unmodified enzyme for the hydrolysis of per-acetylated thymidine at pH 5, or fourfold in the desymmetrization of dimethyl-3-phenylglutarate at pH 7. The new enzyme also exhibited excellent enantioselectivity in the desymmetrization reaction with enantiomeric excess (ee) of >99% when compared to that of the unmodified enzyme (ee=78%).
本章描述了通过在脂肪酶盖子位点定点掺入定制肽来合理设计和合成半合成脂肪酶,以提高其在特定生物转化中的活性、特异性和对映选择性。在酶的寡肽盖子的特定位置通过基因工程引入半胱氨酸,基于快速硫醇-二硫键交换连接并随后脱硫,将与嗜热栖热放线菌脂肪酶(BTL)盖子位点氨基酸序列互补的含半胱氨酸肽共价连接到两种不同的半胱氨酸-BTL变体的盖子上。BTL变体最初固定在固体载体上,以引入固态化学的优势,如定量转化、易于纯化和可回收性。在两种不同的固定化变体BTL-A193C和BTL-L230C中,然后用2-二吡啶二硫化物激活半胱氨酸,以促进与肽的二硫键交换,从而高产率地生成半合成酶。获得了活性和选择性提高的优异结果。例如,肽-BTL缀合物(在193位)在pH 5下对全乙酰化胸苷的水解活性比相应的未修饰酶高40倍,在pH 7下对3-苯基戊二酸二甲酯的去对称化反应中活性高4倍。与未修饰酶(ee = 78%)相比,新酶在去对称化反应中还表现出优异的对映选择性,对映体过量(ee)>99%。