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在有机溶剂和水-有机混合物中的均相生物催化

Homogeneous biocatalysis in organic solvents and water-organic mixtures.

作者信息

Castro G R, Knubovets Tatyana

机构信息

Department of Biomedical Engineering, School of Engineering, Tufts University, Medford, Massachusetts, USA.

出版信息

Crit Rev Biotechnol. 2003;23(3):195-231.

Abstract

Biocatalysis in non-aqueous media has undergone tremendous development during the last decade, and numerous reactions have been introduced and optimized for synthetic applications. In contrast to aqueous enzymology, biotransformations in organic solvents offer unique industrially attractive advantages, such as: drastic changes in the enantioselectivity of the reaction, the reversal of the thermodynamic equilibrium of hydrolysis reactions, suppression of water-dependent side reactions, and resistance to bacterial contamination. Currently, the field is dominated by heterogeneous biocatalysis based primarily on lyophilized enzyme powders, cross-linked crystals, and enzymes immobilized on inert supports that are mainly applied in enantioselective synthesis. However, low reaction rates are an inherent problem of the heterogeneous biocatalysis, while the homogeneous systems have the advantage that the elimination of diffusional barriers of substrates and products between organic and water phases results in an increase in the reaction rate. Here the discussion is focused on the correlation between activity and structure of the intact enzymes dissolved in neat organic solvents, as well as modifications of natural enzymes, which make them soluble and catalytically active in non-aqueous environment. Factors that influence conformation and stability of the enzymes are also discussed. Current developments in non-aqueous biocatalysts that combine advantages of protein modification and immobilization, i.e., HIP plastics, enzyme chips, ionic liquids, are introduced. Finally, engineering enzymes for biotransformations in non-conventional media by directed evolution is summarized.

摘要

在过去十年中,非水介质中的生物催化取得了巨大进展,许多反应已被引入并针对合成应用进行了优化。与水相酶学相比,有机溶剂中的生物转化具有独特的、在工业上颇具吸引力的优势,例如:反应对映选择性的剧烈变化、水解反应热力学平衡的逆转、对水依赖性副反应的抑制以及对细菌污染的抗性。目前,该领域主要由基于冻干酶粉、交联晶体以及固定在惰性载体上的酶的多相生物催化主导,这些主要应用于对映选择性合成。然而,低反应速率是多相生物催化的一个固有问题,而均相体系的优势在于消除了有机相和水相之间底物和产物的扩散障碍,从而导致反应速率提高。在此,讨论聚焦于溶解在纯有机溶剂中的完整酶的活性与结构之间的相关性,以及天然酶的修饰,这些修饰使其在非水环境中可溶且具有催化活性。还讨论了影响酶构象和稳定性的因素。介绍了结合蛋白质修饰和固定化优势的非水生物催化剂的当前发展,即高内相乳液塑料、酶芯片、离子液体。最后,总结了通过定向进化改造用于非常规介质中生物转化的酶。

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