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用于有机溶剂中反应的修饰酶。

Modified enzymes for reactions in organic solvents.

作者信息

Salleh A B, Basri M, Taib M, Jasmani H, Rahman R N Z A, Rahman M B A, Razak C N A

机构信息

Center for Research in Enzyme & Microbial Technology, Fakulti Sains & Pengajian Alam Sekitar, Universiti Putra Malaysia, Serdang, Selangor.

出版信息

Appl Biochem Biotechnol. 2002 Jul-Dec;102-103(1-6):349-57. doi: 10.1385/abab:102-103:1-6:349.

Abstract

Recent studies on biocatalysis in water-organic solvent biphasic systems have shown that many enzymes retain their catalytic activities in the presence of high concentrations of organic solvents. However, not all enzymes are organic solvent tolerant, and most have limited and selective tolerance to particular organic solvents. Protein modification or protein tailoring is an approach to alter the characteristics of enzymes, including solubility in organic solvents. Particular amino acids may play pivotal roles in the catalytic ability of the protein. Attaching soluble modifiers to the protein molecule may alter its conformation and the overall polarity of the molecule. Enzymes, in particular lipases, have been chemically modified by attachment of aldehydes, polyethylene glycols, and imidoesters. These modifications alter the hydrophobicity and conformation of the enzymes, resulting in changes in the microenvironment of the enzymes. By these modifications, newly acquired properties such as enhancement of activity and stability and changes in specificity and solubility in organic solvents are obtained. Modified lipases were found to be more active and stable in organic solvents. The optimum water activity (a(w)) for reaction was also shifted by using modified enzymes. Changes in enantioselective behavior were also observed.

摘要

近期关于水-有机溶剂双相体系中生物催化的研究表明,许多酶在高浓度有机溶剂存在的情况下仍能保持其催化活性。然而,并非所有酶都耐受有机溶剂,并且大多数酶对特定有机溶剂的耐受性有限且具有选择性。蛋白质修饰或蛋白质剪裁是一种改变酶特性的方法,包括在有机溶剂中的溶解度。特定氨基酸可能在蛋白质的催化能力中起关键作用。将可溶性修饰剂连接到蛋白质分子上可能会改变其构象和分子的整体极性。酶,特别是脂肪酶,已通过连接醛、聚乙二醇和亚胺酯进行化学修饰。这些修饰改变了酶的疏水性和构象,导致酶微环境的变化。通过这些修饰,可获得新的特性,如活性和稳定性的增强以及在有机溶剂中特异性和溶解度的变化。发现修饰后的脂肪酶在有机溶剂中更具活性和稳定性。使用修饰后的酶时,反应的最佳水活度(a(w))也会发生变化。还观察到对映选择性行为的改变。

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