Biosynthesis of vitamin B2: a unique way to assemble a xylene ring.

Adelbert Bacher, Markus Fischer

Journal: Chembiochem : a European journal of chemical biology 2011;12(5):670-80

PMID: 21404408

Abstract

The biosynthesis of one riboflavin (vitamin B(2)) molecule requires one molecule of GTP and two molecules of ribulose 5-phosphate as substrates. In the final step, the tricyclic isoalloxazine chromophore, which is the hallmark of flavocoenzymes, arises from a highly unusual dismutation of bicyclic 6,7-dimethyl-8-ribityllumazine that is catalyzed by riboflavin synthase but can also proceed without catalysis. The reaction proceeds via a pentacyclic adduct of two 6,7-dimethyl-8-ribityllumazine molecules, whose cleavage into riboflavin and a pyrimidine derivative (by a sequence of two elimination steps) is mechanistically straightforward. Recently, the formation of the pentacyclic adduct has been proposed to involve a hydride transfer step followed by a [4+2] cycloaddition. Surprisingly, two different classes of riboflavin synthases utilize different diastereomers of the pentacyclic adduct, but the newly generated chiral centers are lost upon the intermediates' subsequent fragmentation.

Copyright © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Address: Institute of Food Chemistry, University of Hamburg, Grindelallee 117, 20146 Hamburg, Germany. [email protected]

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