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1,2- 或 1,3-氢化物迁移:什么控制愈创木烷生物合成?

1,2- or 1,3-Hydride Shifts: What Controls Guaiane Biosynthesis?

机构信息

Kekulé-Institute for Organic Chemistry and Biochemistry, University of Bonn, Gerhard-Domagk-Straße 1, 53121, Bonn, Germany.

Institute for Organic Chemistry, University of Cologne, Greinstraße 4, 50939, Cologne, Germany.

出版信息

Chemistry. 2021 Jul 7;27(38):9758-9762. doi: 10.1002/chem.202101371. Epub 2021 May 26.

Abstract

A systematic computational study addressing the entire chemical space of guaianes in conjunction with an analysis of all known compounds shows that 1,3-hydride shifts are rare events in guaiane biosynthesis. As demonstrated here, 1,3-hydride shifts towards guaianes can only be realized for two stereochemically well defined out of numerous possible stereoisomeric skeletons. One example is given by the mechanism of guaia-4(15)-en-11-ol synthase from California poplar, an enzyme that yields guaianes with unusual stereochemical properties. The general results from DFT calculations were experimentally verified through isotopic-labeling experiments with guaia-4(15)-en-11-ol synthase.

摘要

一项系统的计算研究,涵盖了愈创木烷类化合物的整个化学空间,并对所有已知化合物进行了分析,结果表明 1,3-氢迁移在愈创木烷生物合成中是罕见的事件。正如本文所展示的,只有在为数众多的可能立体异构骨架中,两种在立体化学上定义明确的立体异构体才能实现 1,3-氢迁移至愈创木烷。加州黄杨树中愈创木-4(15)-烯-11-醇合酶的机制就是一个例子,该酶生成具有不寻常立体化学性质的愈创木烷。通过与愈创木-4(15)-烯-11-醇合酶的同位素标记实验,对 DFT 计算的一般结果进行了实验验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c825/8362104/f31d7f36a6c5/CHEM-27-9758-g002.jpg

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