Department of Pharmaceutical Sciences, University of Shizuoka, Shizuoka, 422-8526, Japan.
J Nat Med. 2021 Jun;75(3):434-447. doi: 10.1007/s11418-021-01502-4. Epub 2021 Mar 8.
It has been proposed that biosyntheses of many natural products involve pericyclic reactions, including Diels-Alder (DA) reaction. However, only a small set of enzymes have been proposed to catalyze pericyclic reactions. Most surprisingly, there has been no formal identification of natural enzymes that can be defined to catalyze DA reactions (DAases), despite the wide application of the reaction in chemical syntheses of complex organic compounds. However, recent studies began to accumulate a growing body of evidence that supports the notion that enzymes that formally catalyze DA reactions, in fact exist. In this review, I will begin by describing a short history behind the discovery and characterization of macrophomate synthase, one of the earliest enzymes that was proposed to catalyze an intermolecular DA reaction during the biosynthesis of a substituted benzoic acid in a phytopathogenic fungus Macrophoma commelinae. Then, I will discuss representative enzymes that have been chemically authenticated to catalyze DA reactions, with emphasis on more recent discoveries of DAases involved mainly in fungal secondary metabolite biosynthesis except for one example from a marine streptomycete. The current success in identification of a series of DAases and enzymes that catalyze other pericyclic reactions owes to the combined efforts from both the experimental and theoretical approaches in discovering natural products. Such efforts typically involve identifying the chemical features derived from cycloaddition reactions, isolating the biosynthetic genes that encode enzymes that generate such chemical features and deciphering the reaction mechanisms for the enzyme-catalyzed pericyclic reactions.
人们提出,许多天然产物的生物合成涉及周环反应,包括 Diels-Alder(DA)反应。然而,只有一小部分酶被提议催化周环反应。最令人惊讶的是,尽管 DA 反应在复杂有机化合物的化学合成中得到了广泛应用,但尚未正式鉴定出能够催化 DA 反应(DAase)的天然酶。然而,最近的研究开始积累越来越多的证据,支持酶可以正式催化 DA 反应这一观点。在这篇综述中,我将首先描述在发现和表征真菌 Macrophoma commelinae 中合成取代苯甲酸的生物合成过程中,第一个被提议催化分子间 DA 反应的酶—— macrophomate 合酶背后的简短历史。然后,我将讨论已被化学鉴定为催化 DA 反应的代表性酶,重点介绍除了一个来自海洋链霉菌的例子外,主要涉及真菌次生代谢物生物合成的 DAase 的最新发现。目前,一系列 DAase 和催化其他周环反应的酶的鉴定成功归功于发现天然产物的实验和理论方法的共同努力。这些努力通常涉及识别源自环加成反应的化学特征,分离生成此类化学特征的酶的生物合成基因,并阐明酶催化的周环反应的反应机制。