Sheldon R A
Department of Biotechnology, Delft University of Technology, Julianalaan 136, 2628 BL Delft, The Netherlands.
Biochem Soc Trans. 2007 Dec;35(Pt 6):1583-7. doi: 10.1042/BST0351583.
The key to obtaining an optimum performance of an enzyme is often a question of devising an effective method for its immobilization. In the present review, we describe a novel, versatile and effective methodology for enzyme immobilization as CLEAs (cross-linked enzyme aggregates). The method is exquisitely simple (involving precipitation of the enzyme from aqueous buffer followed by cross-linking of the resulting physical aggregates of enzyme molecules) and amenable to rapid optimization. We have shown it to be applicable to a wide variety of enzymes, including, in addition to a wide variety of hydrolases, lyases, e.g. nitrile hydratases and oxynitrilases, and oxidoreductases such as laccase and galactose oxidase. CLEAs are stable, recyclable catalysts exhibiting high catalyst productivities. Because the methodology is essentially a combination of purification and immobilization into one step, the enzyme does not need to be of high purity. The technique is also applicable to the preparation of combi-CLEAs, containing two or more enzymes, for use in one-pot, multistep syntheses, e.g. an oxynitrilase/nitrilase combi-CLEA for the one-pot conversion of benzaldehyde into (S)-mandelic acid, in high yield and enantiomeric purity.
获得酶的最佳性能的关键通常在于设计一种有效的固定化方法。在本综述中,我们描述了一种作为交联酶聚集体(CLEAs)的新型、通用且有效的酶固定化方法。该方法极其简单(包括从水性缓冲液中沉淀酶,然后对所得的酶分子物理聚集体进行交联),并且易于快速优化。我们已证明它适用于多种酶,除了多种水解酶外,还包括裂合酶,如腈水解酶和醇腈酶,以及氧化还原酶,如漆酶和半乳糖氧化酶。CLEAs是稳定的、可循环使用的催化剂,具有高催化效率。由于该方法本质上是将纯化和固定化结合为一步,因此酶不需要高纯度。该技术还适用于制备包含两种或更多种酶的组合CLEAs,用于一锅多步合成,例如用于将苯甲醛高产率和对映体纯度地一锅转化为(S)-扁桃酸的醇腈酶/腈酶组合CLEA。