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一种分离集成级联反应,克服稀有糖合成中的热力学限制。

A separation-integrated cascade reaction to overcome thermodynamic limitations in rare-sugar synthesis.

机构信息

Department of Biosystems Science and Engineering, ETH Zurich, Mattenstrasse 26, 4058 Basel (Switzerland).

出版信息

Angew Chem Int Ed Engl. 2015 Mar 27;54(14):4182-6. doi: 10.1002/anie.201411279. Epub 2015 Feb 16.

Abstract

Enzyme cascades combining epimerization and isomerization steps offer an attractive route for the generic production of rare sugars starting from accessible bulk sugars but suffer from the unfavorable position of the thermodynamic equilibrium, thus reducing the yield and requiring complex work-up procedures to separate pure product from the reaction mixture. Presented herein is the integration of a multienzyme cascade reaction with continuous chromatography, realized as simulated moving bed chromatography, to overcome the intrinsic yield limitation. Efficient production of D-psicose from sucrose in a three-step cascade reaction using invertase, D-xylose isomerase, and D-tagatose epimerase, via the intermediates D-glucose and D-fructose, is described. This set-up allowed the production of pure psicose (99.9%) with very high yields (89%) and high enzyme efficiency (300 g of D-psicose per g of enzyme).

摘要

酶级联反应结合差向异构化和异构化步骤为从易得的大宗糖起始、通用生产稀有糖提供了一条有吸引力的途径,但受到热力学平衡不利位置的影响,从而降低了产率,并需要复杂的后处理程序来从反应混合物中分离出纯产物。本文介绍了将多酶级联反应与连续色谱法(如模拟移动床色谱法)集成,以克服内在的产率限制。通过使用转化酶、D-木糖异构酶和 D-塔格糖差向异构酶的三步级联反应,从蔗糖高效生产 D-阿洛酮糖,通过中间体 D-葡萄糖和 D-果糖。该设置允许以非常高的产率(89%)和高酶效率(每克酶 300 g 的 D-阿洛酮糖)生产纯 D-阿洛酮糖(99.9%)。

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