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Structure of a flavonoid glucosyltransferase reveals the basis for plant natural product modification.

Abstract:
Glycosylation is a key mechanism for orchestrating the bioactivity, metabolism and location of small molecules in living cells. In plants, a large multigene family of glycosyltransferases is involved in these processes, conjugating hormones, secondary metabolites, biotic and abiotic environmental toxins, to impact directly on cellular homeostasis. The red grape enzyme UDP-glucose:flavonoid 3-O-glycosyltransferase (VvGT1) is responsible for the formation of anthocyanins, the health-promoting compounds which, in planta, function as colourants determining flower and fruit colour and are precursors for the formation of pigmented polymers in red wine. We show that VvGT1 is active, in vitro, on a range of flavonoids. VvGT1 is somewhat promiscuous with respect to donor sugar specificity as dissected through full kinetics on a panel of nine sugar donors. The three-dimensional structure of VvGT1 has also been determined, both in its 'Michaelis' complex with a UDP-glucose-derived donor and the acceptor kaempferol and in complex with UDP and quercetin. These structures, in tandem with kinetic dissection of activity, provide the foundation for understanding the mechanism of these enzymes in small molecule homeostasis.
Publication status:
Published

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Publisher copy:
10.1038/sj.emboj.7600970

Authors

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Institution:
University of Oxford
Division:
MPLS
Department:
Chemistry
Sub department:
Organic Chemistry
Role:
Author


Journal:
EMBO journal More from this journal
Volume:
25
Issue:
6
Pages:
1396-1405
Publication date:
2006-03-01
DOI:
EISSN:
1460-2075
ISSN:
0261-4189


Language:
English
Keywords:
Pubs id:
pubs:39935
UUID:
uuid:889f614e-c344-4633-9164-a18a1683ba00
Local pid:
pubs:39935
Source identifiers:
39935
Deposit date:
2012-12-19
ARK identifier:

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