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核苷磷酸化酶催化的转糖基化产率优化的一般原则。

General Principles for Yield Optimization of Nucleoside Phosphorylase-Catalyzed Transglycosylations.

机构信息

BioNukleo GmbH, Ackerstrasse 76, 13355, Berlin, Germany.

Department of Biotechnology, Technical University of Berlin, ACK24, Ackerstrasse 76, 13355, Berlin, Germany.

出版信息

Chembiochem. 2020 May 15;21(10):1428-1432. doi: 10.1002/cbic.201900740. Epub 2020 Jan 28.

Abstract

The biocatalytic synthesis of natural and modified nucleosides with nucleoside phosphorylases offers the protecting-group-free direct glycosylation of free nucleobases in transglycosylation reactions. This contribution presents guiding principles for nucleoside phosphorylase-mediated transglycosylations alongside mathematical tools for straightforward yield optimization. We illustrate how product yields in these reactions can easily be estimated and optimized using the equilibrium constants of phosphorolysis of the nucleosides involved. Furthermore, the varying negative effects of phosphate on transglycosylation yields are demonstrated theoretically and experimentally with several examples. Practical considerations for these reactions from a synthetic perspective are presented, as well as freely available tools that serve to facilitate a reliable choice of reaction conditions to achieve maximum product yields in nucleoside transglycosylation reactions.

摘要

核苷磷酸化酶的生物催化合成提供了在转糖苷反应中对游离碱基进行无保护基直接糖基化的方法。本贡献提出了核苷磷酸化酶介导的转糖苷反应的指导原则,以及用于直接产率优化的数学工具。我们说明了如何使用涉及的核苷的磷酸解平衡常数轻松估算和优化这些反应中的产物产率。此外,还通过几个实例从理论和实验上证明了磷酸盐对转糖苷产率的不同负面影响。从合成角度提出了这些反应的实际注意事项,以及提供了一些免费的工具,这些工具可帮助可靠地选择反应条件,以在核苷转糖苷反应中获得最大的产物产率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e60e/7318676/e85497d5c0ea/CBIC-21-1428-g003.jpg

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