| Literature DB >> 27072782 |
Tsuyoshi Yamamoto1, Yuta Tsunematsu1, Kodai Hara1, Tomohiro Suzuki2,3, Shinji Kishimoto1, Hirokazu Kawagishi2, Hiroshi Noguchi1, Hiroshi Hashimoto1, Yi Tang4, Kinya Hotta5, Kenji Watanabe6.
Abstract
Geometric isomerization can expand the scope of biological activities of natural products. The observed chemical diversity among the pseurotin-type fungal secondary metabolites is in part generated by a trans to cis isomerization of an olefin. In vitro characterizations of pseurotin biosynthetic enzymes revealed that the glutathione S-transferase PsoE requires participation of the bifunctional C-methyltransferase/epoxidase PsoF to complete the trans to cis isomerization of the pathway intermediate presynerazol. The crystal structure of the PsoE/glutathione/presynerazol complex indicated stereospecific glutathione-presynerazol conjugate formation is the principal function of PsoE. Moreover, PsoF was identified to have an additional, unexpected oxidative isomerase activity, thus making it a trifunctional enzyme which is key to the complexity generation in pseurotin biosynthesis. Through the study, we identified a novel mechanism of accomplishing a seemingly simple trans to cis isomerization reaction.Entities:
Keywords: biosynthesis; enzymes; isomerization; natural products; polyketides
Year: 2016 PMID: 27072782 PMCID: PMC5089960 DOI: 10.1002/anie.201600940
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336