| Literature DB >> 28869713 |
Akimasa Miyanaga1, Ryuichi Takayanagi1, Takashi Furuya1, Ayano Kawamata2, Tomohiro Itagaki2, Yoshiharu Iwabuchi2, Naoki Kanoh2, Fumitaka Kudo1, Tadashi Eguchi1.
Abstract
GfsF is a multifunctional P450 monooxygenase that catalyzes epoxidation and subsequent hydroxylation in the biosynthesis of macrolide polyketide FD-891. Here, we describe the biochemical and structural analysis of GfsF. To obtain the structural basis of a dual-function reaction, we determined the crystal structure of ligand-free GfsF, which revealed GfsF to have a predominantly hydrophobic substrate binding pocket. The docking models, in conjunction with the results of the enzymatic assay with substrate analogues and site-directed mutagenesis suggested two distinct substrate binding modes for epoxidation and hydroxylation reactions, which explained how GfsF regulates the order of two oxidative reactions. These findings provide new insights into the reaction mechanism of multifunctional P450 monooxygenases.Entities:
Keywords: X-ray crystallography; biosynthesis; cytochromes; monooxygenase; polyketides
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Year: 2017 PMID: 28869713 DOI: 10.1002/cbic.201700429
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164