School of Biochemistry, Biomedical Sciences Building, University of Bristol , University Walk, Bristol BS8 1TD, United Kingdom.
BrisSynBio Synthetic Biology Research Centre, Life Sciences Building, University of Bristol , Tyndall Avenue, Bristol BS8 1TQ, United Kingdom.
J Am Chem Soc. 2016 May 18;138(19):6095-8. doi: 10.1021/jacs.6b00232. Epub 2016 May 6.
The Diels-Alder reaction, a [4 + 2] cycloaddition of a conjugated diene to a dienophile, is one of the most powerful reactions in synthetic chemistry. Biocatalysts capable of unlocking new and efficient Diels-Alder reactions would have major impact. Here we present a molecular-level description of the reaction mechanism of the spirotetronate cyclase AbyU, an enzyme shown here to be a bona fide natural Diels-Alderase. Using enzyme assays, X-ray crystal structures, and simulations of the reaction in the enzyme, we reveal how linear substrate chains are contorted within the AbyU active site to facilitate a transannular pericyclic reaction. This study provides compelling evidence for the existence of a natural enzyme evolved to catalyze a Diels-Alder reaction and shows how catalysis is achieved.
Diels-Alder 反应是一种共轭二烯与亲双烯体的[4 + 2]环加成反应,是合成化学中最强大的反应之一。能够解锁新的和有效的 Diels-Alder 反应的生物催化剂将产生重大影响。在这里,我们呈现了螺缩酮环化酶 AbyU 的反应机制的分子水平描述,该酶被证明是真正的天然 Diels-Alderase。使用酶测定、X 射线晶体结构和在酶中的反应模拟,我们揭示了线性底物链如何在 AbyU 活性位点内扭曲,以促进环加成反应。这项研究为存在一种天然酶进化以催化 Diels-Alder 反应提供了令人信服的证据,并展示了如何实现催化。