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Structure and Function of a Dual Reductase-Dehydratase Enzyme System Involved in p-Terphenyl Biosynthesis.


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.

SUBMITTER: Clinger JA 

PROVIDER: S-EPMC8751757 | biostudies-literature | 2021 Dec

REPOSITORIES: biostudies-literature

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Structure and Function of a Dual Reductase-Dehydratase Enzyme System Involved in <i>p</i>-Terphenyl Biosynthesis.

Clinger Jonathan A JA   Zhang Yinan Y   Liu Yang Y   Miller Mitchell D MD   Hall Ronnie E RE   Van Lanen Steven G SG   Phillips George N GN   Thorson Jon S JS   Elshahawi Sherif I SI  

ACS chemical biology 20211111 12


We report the identification of the <i>ter</i> gene cluster responsible for the formation of the <i>p</i>-terphenyl derivatives terfestatins B and C and echoside B from the Appalachian <i>Streptomyces</i> 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 crystallo  ...[more]

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