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用于合成d-法戈明前体的级联反应再探讨:动力学洞察与系统理解

A cascade reaction for the synthesis of d-fagomine precursor revisited: Kinetic insight and understanding of the system.

作者信息

Sudar Martina, Česnik Morana, Clapés Pere, Pohl Martina, Vasić-Rački Đurđa, Findrik Blažević Zvjezdana

机构信息

University of Zagreb, Faculty of Chemical Engineering and Technology, Savska c. 16, Zagreb, HR-10000, Croatia.

University of Zagreb, Faculty of Chemical Engineering and Technology, Savska c. 16, Zagreb, HR-10000, Croatia.

出版信息

N Biotechnol. 2021 Jul 25;63:19-28. doi: 10.1016/j.nbt.2021.02.004. Epub 2021 Feb 25.

Abstract

The synthesis of aldol adduct (3S,4R)-6-[(benzyloxycarbonyl)amino]-5,6-dideoxyhex-2-ulose, a precursor of the interesting dietary supplement, iminosugar d-fagomine, was studied in a cascade reaction with three enzymes starting from Cbz-N-3-aminopropanol. This system was studied previously using a statistical optimization method which enabled a 79 % yield of the aldol adduct with a 10 % yield of the undesired amino acid by-product. Here, a kinetic model of the cascade, including enzyme operational stability decay rate and the undesired overoxidation of the intermediate product, was developed. The validated model was instrumental in the optimization of the cascade reaction in the batch reactor. Simulations were carried out to determine the variables with the most significant impact on substrate conversion and product yield. As a result, process conditions were found that provided the aldol adduct in 92 % yield with only 0.7 % yield of the amino acid in a one-pot one-step reaction. Additionally, compared to previous work, this improved process outcome was achieved at lower concentrations of two enzymes used in the reaction. With this study the advantages are demonstrated of a modelling approach in developing complex biocatalytical processes. Mathematical models enable better understanding of the interactions of variables in the investigated system, reduce cost, experimental efforts in the lab and time necessary to obtain results since the simulations are carried out in silico.

摘要

对有趣的膳食补充剂亚氨基糖d-法戈明的前体——醛醇加合物(3S,4R)-6-[(苄氧羰基)氨基]-5,6-二脱氧己-2-酮糖的合成进行了研究,该合成以Cbz-N-3-氨基丙醇为起始原料,通过三种酶的级联反应进行。此前曾使用统计优化方法对该体系进行研究,该方法能使醛醇加合物的产率达到79%,同时副产10%的不需要的氨基酸。在此,建立了该级联反应的动力学模型,包括酶的操作稳定性衰减速率和中间产物的不希望的过氧化反应。经验证的模型有助于优化间歇反应器中的级联反应。通过模拟确定对底物转化率和产物产率影响最大的变量。结果发现,在一锅一步反应中,醛醇加合物的产率为92%,氨基酸的产率仅为0.7%。此外,与之前的工作相比,在较低浓度的两种反应酶的情况下实现了这一改进的工艺结果。通过这项研究,展示了建模方法在开发复杂生物催化过程中的优势。数学模型能够更好地理解所研究系统中变量之间的相互作用,降低成本、减少实验室的实验工作量以及获得结果所需的时间,因为模拟是在计算机上进行的。

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