| Literature DB >> 35191152 |
Yijun Yan1, Zhiyin Yu1, Wei Zhong1,2, Xiaodong Hou3, Qiaoqiao Tao4, Minhang Cao1, Li Wang1, Xiaofeng Cai4, Yijian Rao3, Sheng-Xiong Huang1.
Abstract
Flavin-dependent enzymes enable a broad range of redox transformations and generally act as monofunctional and stereoselective catalysts. Herein, we report the investigation of a multifunctional and non-stereoselective FMN-dependent oxidoreductase RubE7 from the rubrolone biosynthetic pathway. Our study outlines a single RubE7-catalysed sequential reduction of three spatially distinct bonds in a tropolone ring and a reversible double-bond reduction and dehydrogenation. The crystal structure of IstO (a RubE7 homologue) with 2.0 Å resolution reveals the location of the active site at the interface of two monomers, and the size of active site is large enough to permit both flipping and free rotation of the substrate, resulting in multiple nonselective reduction reactions. Molecular docking and site mutation studies demonstrate that His106 is oriented towards the substrate and is important for the reverse dehydrogenation reaction.Entities:
Keywords: Biosynthesis; Dehydrogenation; Ene-Reductases; Enzyme Catalysis; Flavoenzymes
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Year: 2022 PMID: 35191152 DOI: 10.1002/anie.202200189
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336