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基于自然的方法合成非天然萜烯类似物。

Nature-driven approaches to non-natural terpene analogues.

机构信息

Institute of Organic Chemistry and Center of Biomolecular Drug Research (BMWZ), Leibniz Universität Hannover, Schneiderberg 1B, 30167 Hannover, Germany.

出版信息

Nat Prod Rep. 2020 Aug 1;37(8):1080-1097. doi: 10.1039/c9np00055k. Epub 2020 Feb 18.

Abstract

Covering: up to 2019The reactions catalysed by terpene synthases belong to the most complex and fascinating cascade-type transformations in Nature. Although many accept only one natural terpene precursor and convert it with high selectivity into only one product, several of these remarkable biocatalysts were recently shown to have a surprising plasticity towards non-natural substrate analogues. For an easy access to the topic also for readers who are new to the field, this review will first briefly cover the principles of natural terpene biosynthesis. This is followed by a chapter that highlights purely chemical transformations mimicking terpene synthase catalysed reactions. Then, the main focus of this article will shed light on the recent advances of terpene synthase catalysed transformations of synthetic substrate analogues. As will be demonstrated, a simple conceptual approach extensively broadens the chemical space that can be reached with terpene synthases.

摘要

涵盖

截至 2019 年萜类合酶催化的反应属于自然界中最复杂和最迷人的级联型转化。尽管许多萜类合酶只接受一种天然萜类前体,并具有很高的选择性将其转化为一种产物,但最近有几项研究表明,这些显著的生物催化剂对非天然底物类似物具有惊人的可塑性。为了使该领域的新读者也能轻松了解这一主题,本综述将首先简要介绍天然萜类生物合成的原理。接下来的一章重点介绍了模拟萜类合酶催化反应的纯化学转化。然后,本文的主要重点将放在萜类合酶催化的合成底物类似物转化的最新进展上。正如将展示的那样,一种简单的概念方法广泛扩展了可以用萜类合酶达到的化学空间。

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