| Literature DB >> 34763417 |
Jonathan A Clinger1, Yinan Zhang2,3,4, Yang Liu2,3, Mitchell D Miller1, Ronnie E Hall1, Steven G Van Lanen2, George N Phillips1,5, Jon S Thorson2,3, Sherif I Elshahawi6.
Abstract
We report the identification of the ter gene cluster responsible for the formation of the p-terphenyl derivatives terfestatins B and C and echoside B from the Appalachian Streptomyces strain RM-5-8. We characterize the function of TerB/C, catalysts that work together as a dual enzyme system in the biosynthesis of natural terphenyls. TerB acts as a reductase and TerC as a dehydratase to enable the conversion of polyporic acid to a terphenyl triol intermediate. X-ray crystallography of the apo and substrate-bound forms for both enzymes provides additional mechanistic insights. Validation of the TerC structural model via mutagenesis highlights a critical role of arginine 143 and aspartate 173 in catalysis. Cumulatively, this work highlights a set of enzymes acting in harmony to control and direct reactive intermediates and advances fundamental understanding of the previously unresolved early steps in terphenyl biosynthesis.Entities:
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Year: 2021 PMID: 34763417 PMCID: PMC8751757 DOI: 10.1021/acschembio.1c00701
Source DB: PubMed Journal: ACS Chem Biol ISSN: 1554-8929 Impact factor: 5.100