The Research Center of Chiral Drugs, Innovation Research Institute of Traditional Chinese Medicine (IRI), Shanghai University of Traditional Chinese Medicine, Shanghai, 201203, China.
Key Laboratory of Synthetic Biology, CAS Center for Excellence in Molecular Plant Sciences, University of Chinese Academy of Sciences, Shanghai, 200032, China.
Angew Chem Int Ed Engl. 2022 Mar 14;61(12):e202112063. doi: 10.1002/anie.202112063. Epub 2022 Feb 3.
The 2-oxoglutarate (2OG)-dependent non-heme enzyme FtmOx1 catalyzes the endoperoxide biosynthesis of verruculogen. Although several mechanistic studies have been carried out, the catalytic mechanism of FtmOx1 is not well determined owing to the lack of a reliable complex structure of FtmOx1 with fumitremorgin B. Herein we provide the X-ray crystal structure of the ternary complex FtmOx1⋅2OG⋅fumitremorgin B at a resolution of 1.22 Å. Our structures show that the binding of fumitremorgin B induces significant compression of the active pocket and that Y68 is in close proximity to C26 of the substrate. Further MD simulation and QM/MM calculations support a CarC-like mechanism, in which Y68 acts as the H atom donor for quenching the C26-centered substrate radical. Our results are consistent with all available experimental data and highlight the importance of accurate complex structures in the mechanistic study of enzymatic catalysis.
2-氧戊二酸(2OG)依赖性非血红素酶 FtmOx1 催化 verruculogen 的环氧化物生物合成。尽管已经进行了几项机制研究,但由于缺乏与 fumitremorgin B 的可靠 FtmOx1 复合物结构,因此 FtmOx1 的催化机制仍未确定。在此,我们提供了 FtmOx1·2OG·fumitremorgin B 三元复合物的 X 射线晶体结构,分辨率为 1.22 Å。我们的结构表明,fumitremorgin B 的结合会导致活性口袋发生明显的压缩,并且 Y68 与底物的 C26 非常接近。进一步的 MD 模拟和 QM/MM 计算支持 CarC 样机制,其中 Y68 作为 H 原子供体,用于猝灭以 C26 为中心的底物自由基。我们的结果与所有可用的实验数据一致,并强调了在酶催化的机制研究中准确的复合物结构的重要性。