Yin Zhiyong, Dickschat Jeroen S
Kekulé-Institute for Organic Chemistry and Biochemistry, University of Bonn, Gerhard-Domagk-Straße 1, 53121 Bonn, Germany.
Nat Prod Rep. 2021 Aug 1;38(8):1445-1468. doi: 10.1039/d0np00091d. Epub 2021 Jan 21.
Covering: up to 2020Polyketides form a large group of bioactive secondary metabolites that usually contain one or more double bonds. Although most of the double bonds found in polyketides are trans or E-configured, several cases are known in which cis or Z-configurations are observed. Double bond formation by polyketide synthases (PKSs) is widely recognised to be catalysed by ketoreduction and subsequent dehydration of the acyl carrier protein (ACP)-tethered 3-ketoacyl intermediate in the PKS biosynthetic assembly line with a specific stereochemical course in which the ketoreduction step determines the usual trans or more rare cis double bond configuration. Occasionally, other mechanisms for the installation of cis double bonds such as double bond formation during chain release or post-PKS modifications including, amongst others, isomerisations or double bond installations by oxidation are observed. This review discusses the peculiar mechanisms of cis double bond formation in polyketide biosynthesis.
截至2020年
聚酮化合物构成了一大类具有生物活性的次级代谢产物,通常含有一个或多个双键。虽然在聚酮化合物中发现的大多数双键是反式或E构型,但也有一些情况观察到顺式或Z构型。聚酮合酶(PKS)形成双键的过程被广泛认为是由酮还原以及随后在PKS生物合成装配线中酰基载体蛋白(ACP)连接的3-酮酰基中间体脱水催化的,具有特定的立体化学过程,其中酮还原步骤决定了常见的反式或更罕见的顺式双键构型。偶尔,也会观察到其他形成顺式双键的机制,例如在链释放过程中形成双键或PKS后修饰,包括异构化或通过氧化进行双键安装等。本文综述了聚酮生物合成中顺式双键形成的特殊机制。