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The origin and biosynthesis of the benzenoid moiety of ubiquinone (coenzyme Q) in Arabidopsis

Plant Biologists. 2014; 
Anna Block,a Joshua R. Widhalm,b Abdelhak Fatihi,a Rebecca E. Cahoon,a Yashitola Wamboldt,a Christian Elowsky,a Sally A. Mackenzie,a Edgar B. Cahoon,a Clint Chapple,b Natalia Dudareva,b and Gilles J. Basset
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Codon Optimization Full-length At4g19010 cDNA (ABRC clone G60335) was codon optimized (GenScript) and subcloned using Gateway technology into expression vector pDEST17 (Invitrogen) for N-terminal fusion with a 6xHis tag. Get A Quote

摘要

It is not known how plants make the benzenoid ring of ubiquinone, a vital respiratory cofactor. Here, we demonstrate that Arabidopsis thaliana uses for that purpose two separate biosynthetic branches stemming from phenylalanine and tyrosine. Gene network modeling and characterization of T-DNA mutants indicated that acyl-activating enzyme encoded by At4g19010 contributes to the biosynthesis of ubiquinone specifically from phenylalanine. CoA ligase assays verified that At4g19010 prefers para-coumarate, ferulate, and caffeate as substrates. Feeding experiments demonstrated that the at4g19010 knockout cannot use para-coumarate for ubiquinone biosynthesis and that the supply of 4-hydroxybenzoate, the side-chain shor... More

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